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NSR database version of March 21, 2024.

Search: Author = L.V.Grigorenko

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2023BE18      Phys.Part. and Nucl.Lett. 20, 629 (2023)

A.A.Bezbakh, S.G.Belogurov, V.Chudoba, A.S.Fomichev, A.V.Gorshkov, L.V.Grigorenko, G.Kaminski, M.S.Khirk, A.G.Knyazev, S.A.Krupko, B.Mauyey, I.A.Muzalevskii, E.Yu.Nikolskii, A.M.Quynh, P.G.Sharov, R.S.Slepnev, S.V.Stepantsov, G.M.Ter-Akopian, R.Wolski

Detector Array for the 7H Nucleus Multi-Neutron Decay Study

RADIOACTIVITY 7H(t) [from 2H(8He, 3He)7H, E=25 MeV/nucleon]; measured decay products, En, In, TOF; deduced the five-body decay. The radioactive beam line of ACCULINNA-2 separator in the G.N. Flerov Laboratory of Nuclear Reactions.

doi: 10.1134/S154747712304009X
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2023NI06      Nucl.Instrum.Methods Phys.Res. B541, 121 (2023)

E.Yu.Nikolskii, I.A.Muzalevskii, S.A.Krupko, A.A.Bezbakh, V.Chudoba, S.G.Belogurov, D.Biare, A.S.Fomichev, E.M.Gazeeva, A.V.Gorshkov, L.V.Grigorenko, G.Kaminski, M.Khirk, O.Kiselev, D.A.Kostyleva, M.Yu.Kozlov, B.Mauyey, I.Mukha, Yu.L.Parfenova, A.M.Quynh, V.N.Schetinin, A.Serikov, S.I.Sidorchuk, P.G.Sharov, R.S.Slepnev, S.V.Stepantsov, A.Swiercz, G.M.Ter-Akopian, R.Wolski, M.V.Zhukov

Study of proton and deuteron pickup reactions (d, 3He), (d, 4He) with 8He and 10Be radioactive beams at ACCULINNA-2 fragment separator

NUCLEAR REACTIONS 2H(10B, 3He), (10B, α), E=42 MeV/nucleon; measured reaction products. 6,7H; deduced excitation and missing mass spectra. Comparison with with Monte Carlo calculations. The ACCULINNA-2 fragment separator.

doi: 10.1016/j.nimb.2023.05.043
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2022NI08      Phys.Rev. C 105, 064605 (2022)

E.Yu.Nikolskii, I.A.Muzalevskii, A.A.Bezbakh, V.Chudoba, S.A.Krupko, S.G.Belogurov, D.Biare, A.S.Fomichev, E.M.Gazeeva, A.V.Gorshkov, L.V.Grigorenko, G.Kaminski, M.Khirk, O.Kiselev, D.A.Kostyleva, M.Yu.Kozlov, B.Mauyey, I.Mukha, Yu.L.Parfenova, W.Piatek, A.M.Quynh, V.N.Schetinin, A.Serikov, S.I.Sidorchuk, P.G.Sharov, N.B.Shulgina, R.S.Slepnev, S.V.Stepantsov, A.Swiercz, P.Szymkiewicz, G.M.Ter-Akopian, R.Wolski, B.Zalewski, M.V.Zhukov

6H states studied in the 2H(8He, 4He) reaction and evidence of an extremely correlated character of the 5H ground state

NUCLEAR REACTIONS 2H(8He, α)6H, E=26 MeV/nucleon, [secondary 8He beam produced in 9Be(11B, X), E=33.4 MeV/nucleon reaction, fragments separated using ACCULINNA-2 separator at FLNR-JINR-Dubna facility]; measured reaction products, Eα, Iα, neutrons, α(3H)-coin, α(3H)n-coin, angular distributions and TOF using ΔE-E-E telescopes of CsI(Tl) scintillators, position-sensitive chambers, and a neutron wall of 48 stilbene-crystal modules; analyzed resonance energy profiles and the momentum distributions of fragments of the sequential 6H to 5H(g.s.)+n to 3H+3n decay by direct four-body-decay and sequential-emission mechanisms; deduced missing mass spectrum, evidence for dineutron correlations in the decay of 5H g.s. 6H; deduced broad resonant states, widths, decay modes of resonances, energy distributions of 3H fragments and neutrons emitted by 6H states, differential cross section, no evidence for a 2.6-2.9 MeV resonance reported earlier; discussed energy of the ground state of 6H with no definite conclusion. Monte Carlo simulations. 2H(10Be, α)8Li, E=42 MeV/nucleon; reaction used for calibration of 6H spectrum.

doi: 10.1103/PhysRevC.105.064605
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2021GR03      Phys.Atomic Nuclei 84, 68 (2021)

L.V.Grigorenko, G.N.Kropachev, T.V.Kulevoy, I.N.Meshkov, S.M.Polozov, A.S.Fomichev, B.Yu.Sharkov, P.Yu.Shatunov, M.I.Yavor

DERICA Project and Strategies of the Development of Low-Energy Nuclear Physics

doi: 10.1134/S1063778821010099
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2021MA22      Phys.Rev. C 103, 034319 (2021)

I.Mardor, S.A.Andres, T.Dickel, D.Amanbayev, S.Beck, J.Bergmann, H.Geissel, L.Grof, E.Haettner, C.Hornung, N.Kalantar-Nayestanaki, G.Kripko-Koncz, I.Miskun, A.Mollaebrahimi, W.R.Plass, C.Scheidenberger, H.Weick, S.Bagchi, D.L.Balabanski, A.A.Bezbakh, Z.Brencic, O.Charviakova, V.Chudoba, P.Constantin, M.Dehghan, A.S.Fomichev, L.V.Grigorenko, O.Hall, M.N.Harakeh, J.-P.Hucka, A.Kankainen, O.Kiselev, R.Knobel, D.A.Kostyleva, S.A.Krupko, N.Kurkova, N.Kuzminchuk, I.Mukha, I.A.Muzalevskii, D.Nichita, C.Nociforo, Z.Patyk, M.Pfutzner, S.Pietri, S.Purushothaman, M.P.Reiter, H.Roesch, F.Schirru, P.G.Sharov, A.Spataru, G.Stanic, A.State, Y.K.Tanaka, M.Vencelj, M.I.Yavor, J.Zhao

Mass measurements of As, Se, and Br nuclei, and their implication on the proton-neutron interaction strength toward the N=Z line

ATOMIC MASSES 69As, 70,71Se, 71Br; measured mass-to-charge ratio spectra using the multiple-reflection time-of-flight mass spectrometer (MR-TOF-MS) at the Fragment Separator (FRS) at GSI; deduced mass excesses and compared to evaluated data in AME-2016, and proton-neutron interaction (δVpn) for odd-odd nuclei along the N=Z line above Z=29. Isotopes produced via fragmentation in 9Be(124Xe, X), E=982 MeV/nucleon, followed by separation of fragments using FRS separator at GSI.

doi: 10.1103/PhysRevC.103.034319
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2021MU04      Phys.Rev. C 103, 044313 (2021)

I.A.Muzalevskii, A.A.Bezbakh, E.Yu.Nikolskii, V.Chudoba, S.A.Krupko, S.G.Belogurov, D.Biare, A.S.Fomichev, E.M.Gazeeva, A.V.Gorshkov, L.V.Grigorenko, G.Kaminski, O.Kiselev, D.A.Kostyleva, M.Yu.Kozlov, B.Mauyey, I.Mukha, Yu.L.Parfenova, W.Piatek, A.M.Quynh, V.N.Schetinin, A.Serikov, S.I.Sidorchuk, P.G.Sharov, N.B.Shulgina, R.S.Slepnev, S.V.Stepantsov, A.Swiercz, P.Szymkiewicz, G.M.Ter-Akopian, R.Wolski, B.Zalewski, M.V.Zhukov

Resonant states in 7H: Experimental studies of the 2H(8He, 3He) reaction

NUCLEAR REACTIONS 2H(8He, 3He)7H, E=26 MeV/nucleon; 2H(10Be, 3He)9Li, [secondary 8He and 10Be beams from 9Be(11B, X), E=33.4 MeV/nucleon, and 9Be(15N, X), E=49.7 MeV/nucleon, respectively, followed by fragment separation by ACCULINNA-2 fragment separator at the U-400M cyclotron of FLNR, JINR, Dubna]; measured recoil 3He particles, (3He)(3H)- and (3He)n-coin using two identical ΔE-E-E single-sided silicon-detector telescopes for 3He, a square array of 16 CsI(Tl) crystals for tritons from the decay of 7H, and a neutron spectrometer of 48 organic scintillator modules for the (10Be, 3He) reaction. 7H; deduced missing mass spectra, center-of-mass angular distributions, levels, resonances, J, π, widths. 9Li; deduced excitation spectrum. Comparison with previous experimental results. Angular distributions analyzed using DWBA/FRESCO calculations.

doi: 10.1103/PhysRevC.103.044313
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2020BE01      Phys.Rev.Lett. 124, 022502 (2020)

A.A.Bezbakh, V.Chudoba, S.A.Krupko, S.G.Belogurov, D.Biare, A.S.Fomichev, E.M.Gazeeva, A.V.Gorshkov, L.V.Grigorenko, G.Kaminski, O.A.Kiselev, D.A.Kostyleva, M.Y.Kozlov, B.Mauyey, I.Mukha, I.A.Muzalevskii, E.Y.Nikolskii, Y.L.Parfenova, W.Piatek, A.M.Quynh, V.N.Schetinin, A.Serikov, S.I.Sidorchuk, P.G.Sharov, R.S.Slepnev, S.V.Stepantsov, A.Swiercz, P.Szymkiewicz, G.M.Ter-Akopian, R.Wolski, B.Zalewski, M.V.Zhukov

Evidence for the First Excited State of 7H

NUCLEAR REACTIONS 2H(8He, 3He)7H, E=26 MeV/nucleon; measured reaction products; deduced missing mass spectrum, σ(θ), level energies, J, π. Comparison with systematics.

doi: 10.1103/physrevlett.124.022502
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2020GR09      Phys.Rev. C 102, 014611 (2020)

L.V.Grigorenko, N.B.Shulgina, M.V.Zhukov

High-precision studies of the soft dipole mode in two-neutron halo nuclei: The 6He case

NUCLEAR STRUCTURE 6He; calculated ground state wavefunctions, E1 sum rule, soft dipole mode (SDM) E1 strength function of the transition to the 1+ continuum 4He+n+n state, energy-angular three-body correlation contours for 6He SDM transitions, energy and angular distributions for products of the E1 dissociations characteristics of the 5He p3/2 resonance; analyzed sensitivity of the results to the 6He ground-state structure and to final-state interactions. Large-basis hyperspherical harmonics formalism. Comparison with other theoretical calculations, and with experimental data.

doi: 10.1103/PhysRevC.102.014611
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2020GR11      Phys.Lett. B 807, 135557 (2020)

L.V.Grigorenko, N.B.Shulgina, M.V.Zhukov

Three-body vs. dineutron approach to two-neutron radiative capture in 6He

NUCLEAR REACTIONS 4He(2n, γ)6He, E<1 MeV; calculated low-energy asymptotics of the E1 strength functions, capture rates.

doi: 10.1016/j.physletb.2020.135557
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2020MU10      Bull.Rus.Acad.Sci.Phys. 84, 500 (2020)

I.A.Muzalevskii, V.Chudoba, S.G.Belogurov, A.A.Bezbakh, D.Biare, A.S.Fomichev, S.A.Krupko, E.M.Gazeeva, M.S.Golovkov, A.V.Gorshkov, L.V.Grigorenko, G.Kaminski, O.Kiselev, D.A.Kostyleva, M.Yu.Kozlov, B.Mauyey, I.Mukha, E.Yu.Nikolskii, Yu.L.Parfenova, W.Piatek, A.M.Quynh, V.N.Schetinin, A.Serikov, S.I.Sidorchuk, P.G.Sharov, R.S.Slepnev, S.V.Stepantsov, A.Swiercz, P.Szymkiewicz, G.M.Ter-Akopian, R.Wolski, B.Zalewski

Detection of the Low Energy Recoil 3He in the Reaction 2H(8He, 3He)7H

doi: 10.3103/S106287382004019X
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2020SU15      Bull.Rus.Acad.Sci.Phys. 84, 461 (2020)

O.M.Sukhareva, L.V.Grigorenko, D.A.Kostyleva, M.V.Zhukov

Studying the Validity of the Quasi-Classical Approach to Three-Body Decays

doi: 10.3103/S1062873820040310
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2019CH29      Bull.Rus.Acad.Sci.Phys. 83, 392 (2019)

V.Chudoba, L.V.Grigorenko, A.S.Fomichev, A.A.Bezbakh, I.A.Egorova, S.N.Ershov, A.V.Gorshkov, V.A.Gorshkov, G.Kaminski, S.A.Krupko, I.Mukha, E.Yu.Nikolskii, Yu.L.Parfenova, S.I.Sidorchuk, P.G.Sharov, R.S.Slepnev, L.Standylo, S.V.Stepantsov, G.M.Ter-Akopian, R.Wolski, M.V.Zhukov

Detailed Study of External Correlations in the Low-Energy Spectrum of Beryllium-6

doi: 10.3103/S1062873819040142
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2019FO14      Bull.Rus.Acad.Sci.Phys. 83, 385 (2019)

A.S.Fomichev, A.A.Bezbakh, S.G.Belogurov, R.Wolski, E.M.Gazeeva, A.V.Gorshkov, L.V.Grigorenko, B.Zalewski, G.Kaminski, S.A.Krupko, I.A.Muzalevskii, E.Yu.Nikolskii, Yu.L.Parfenova, S.I.Sidorchuk, R.S.Slepnev, G.M.Ter-Akopian, V.Chudoba, P.G.Sharov

The First Experiments with the New ACCULINNA-2 Fragment Separato

doi: 10.3103/S1062873819040105
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2019KO18      Phys.Rev.Lett. 123, 092502 (2019)

D.Kostyleva, I.Mukha, L.Acosta, E.Casarejos, V.Chudoba, A.A.Ciemny, W.Dominik, J.A.Duenas, V.Dunin, J.M.Espino, A.Estrade, F.Farinon, A.Fomichev, H.Geissel, A.Gorshkov, L.V.Grigorenko, Z.Janas, G.Kaminski, O.Kiselev, R.Knobel, S.Krupko, M.Kuich, Y.A.Litvinov, G.Marquinez-Duran, I.Martel, C.Mazzocchi, C.Nociforo, A.K.Orduz, M.Pfutzner, S.Pietri, M.Pomorski, A.Prochazka, S.Rymzhanova, A.M.Sanchez-Benitez, C.Scheidenberger, H.Simon, B.Sitar, R.Slepnev, M.Stanoiu, P.Strmen, I.Szarka, M.Takechi, Y.K.Tanaka, H.Weick, M.Winkler, J.S.Winfield, X.Xu, M.V.Zhukov

Towards the Limits of Existence of Nuclear Structure: Observation and First Spectroscopy of the Isotope 31K by Measuring Its Three-Proton Decay

RADIOACTIVITY 31K(p), (2p), (3p) [from 9Be(36Ar, X)31Ar, E=885 MeV/nucleon]; measured decay products, Ep, Ip; deduced energies of the ground and excited states of 31K, upper T1/2 limit for the states.

doi: 10.1103/PhysRevLett.123.092502
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2019SH36      JETP Lett. 110, 5 (2019)

P.G.Sharov, L.V.Grigorenko, A.N.Ismailova, M.V.Zhukov

Pauli-Principle Driven Correlations in Four-Neutron Nuclear Decays

RADIOACTIVITY 8C, 6Be(2p), 8He(4n), 7H, 28O(4n); analyzed available data; deduced the correlations in emission of four nucleons in the nuclear five-body decay.

doi: 10.1134/s0021364019130046
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2018CH56      Phys.Rev. C 98, 054612 (2018)

V.Chudoba, L.V.Grigorenko, A.S.Fomichev, A.A.Bezbakh, I.A.Egorova, S.N.Ershov, M.S.Golovkov, A.V.Gorshkov, V.A.Gorshkov, G.Kaminski, S.A.Krupko, I.Mukha, E.Yu.Nikolskii, Yu.L.Parfenova, S.I.Sidorchuk, P.G.Sharov, R.S.Slepnev, L.Standylo, S.V.Stepantsov, G.M.Ter-Akopian, R.Wolski, M.V.Zhukov

Three-body correlations in direct reactions: Example of 6Be populated in the (p, n) reaction

NUCLEAR REACTIONS 1H(6Li, 6Be), E=47 MeV/nucleon; measured Eα, Iα, E(p), I(p), αp- and pp-coin, p(θ) and α(θ), differential σ(E) of channels populating g.s. and first 2+ state in 6Be, angular kinetic energy distributions of 6Be decay using two annular telescopes of position-sensitive silicon detectors with CsI(Tl) crystal arrays for particle detection using the U-400M cyclotron and ACCULINNA facility at the FLNR-JINR facility. 6Be; deduced integral invariant mass spectrum, density matrix spin structure for the 2+ state, energy distributions for the α+p+p decay of the 6Be continuum. Monte Carlo simulations. Relevance to high-statistics few-body correlation data to extract detailed information on the reaction mechanism.

doi: 10.1103/PhysRevC.98.054612
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2018FO16      Eur.Phys.J. A 54, 97 (2018)

A.S.Fomichev, L.V.Grigorenko, S.A.Krupko, S.V.Stepantsov, G.M.Ter-Akopian

The ACCULINNA-2 project: The physics case and technical challenges

doi: 10.1140/epja/i2018-12528-0
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2018GR02      Phys.Rev. C 97, 034605 (2018)

L.V.Grigorenko, J.S.Vaagen, M.V.Zhukov

Exploring the manifestation and nature of a dineutron in two-neutron emission using a dynamical dineutron model

RADIOACTIVITY 26O, 5H(2n); calculated half-life of 26O g.s., neutron-neutron correlations in the decay of 26O g.s., n-n relative energy spectra for 5H g.s. using three models: two-body dineutron emission model, static three-body dineutron model (S2nM), and dynamic three-body dineutron model (D2nM), based on Migdal-Watson approximation for final state interactions (FSI).

doi: 10.1103/PhysRevC.97.034605
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2018GR12      Phys.Rev. C 98, 064309 (2018)

L.V.Grigorenko, I.Mukha, D.Kostyleva, C.Scheidenberger, L.Acosta, E.Casarejos, V.Chudoba, A.A.Ciemny, W.Dominik, J.A.Duenas, V.Dunin, J.M.Espino, A.Estrade, F.Farinon, A.Fomichev, H.Geissel, A.Gorshkov, Z.Janas, G.Kaminski, O.Kiselev, R.Knobel, S.Krupko, M.Kuich, Yu.A.Litvinov, G.Marquinez-Duran, I.Martel, C.Mazzocchi, E.Yu.Nikolskii, C.Nociforo, A.K.Orduz, M.Pfutzner, S.Pietri, M.Pomorski, A.Prochazka, S.Rymzhanova, A.M.Sanchez-Benitez, P.Sharov, H.Simon, B.Sitar, R.Slepnev, M.Stanoiu, P.Strmen, I.Szarka, M.Takechi, Y.K.Tanaka, H.Weick, M.Winkler, J.S.Winfield, X.Xu, M.V.Zhukov

Deep excursion beyond the proton dripline. II. Toward the limits of existence of nuclear structure

NUCLEAR STRUCTURE 28,29,30Cl, 29,30,31Ar; analyzed experimental results obtained in companion paper 2018Mu18; deduced large Thomas-Ehrmann shifts. 25,26,27,28,29,30Cl, 26,27,28,29,30,31Ar; calculated S(p) for Cl and S(2p) for Ar isotopes and compared with available experimental values, level energies in 26,27Cl and compared to mirror levels in isobaric partners 26F and 27Ne. 24,25,26S; estimated S(2p), S(3p), S(4p) values. Systematics of odd-even staggering energies in 19,20,22,24,26,28Ne, 19,21,23,25,27F, 21,22Mg, 23,24Si, 26S, which are isotones of 27,28Ar.

RADIOACTIVITY 26,27,28,29,31Ar, 26,27,28,29,31Cl(p); calculated widths and T1/2 of Ar isotopes. This paper is a continuation of the analyses of experimental data reported in their companion paper 2018Mu18.

doi: 10.1103/PhysRevC.98.064309
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2018MU18      Phys.Rev. C 98, 064308 (2018)

I.Mukha, L.V.Grigorenko, D.Kostyleva, L.Acosta, E.Casarejos, A.A.Ciemny, W.Dominik, J.A.Duenas, V.Dunin, J.M.Espino, A.Estrade, F.Farinon, A.Fomichev, H.Geissel, A.Gorshkov, Z.Janas, G.Kaminski, O.Kiselev, R.Knobel, S.Krupko, M.Kuich, Yu.A.Litvinov, G.Marquinez-Duran, I.Martel, C.Mazzocchi, C.Nociforo, A.K.Orduz, M.Pfutzner, S.Pietri, M.Pomorski, A.Prochazka, S.Rymzhanova, A.M.Sanchez-Benitez, C.Scheidenberger, P.Sharov, H.Simon, B.Sitar, R.Slepnev, M.Stanoiu, P.Strmen, I.Szarka, M.Takechi, Y.K.Tanaka, H.Weick, M.Winkler, J.S.Winfield, X.Xu, M.V.Zhukov

Deep excursion beyond the proton dripline. I. Argon and chlorine isotope chains

NUCLEAR REACTIONS 9Be(31Ar, X), E=620 MeV/nucleon, [secondary 31Ar beam from fragmentation of 885 MeV/nucleon 36Ar primary beam]; measured proton and heavy-ion spectra, (heavy ion)p- and (heavy ion)pp-coin (proton)(heavy ion)(θ) using double-sided silicon micro-strip detectors for protons and optical time projection chamber for stopped heavy ions at SIS-FRS facility of GSI, a pilot version of the EXPERT (EXotic Particle Emission and Radioactivity by Tracking) setup planned by the Super-FRS Experiment Collaboration of the FAIR project at GSI. 28,30Cl, 29,31Ar; deduced proton-unbound states, S(2p) for 29,31Ar, and S(p) for 28Cl. 28,30Cl; identified new isotopes, unbound to one-proton emission, deduced ground-state energies. Systematics of level energies, J, π in 28,29,30,31,32Cl. Systematics of odd-even staggering energies in 21,22,23Ne, 22,24,25,26,28,30Mg, 25,26Si, 28,29S, 23,25,27,29,31Al, 21,23,25,27,29Na, which are isotones of 29,30,31Ar. Comparison with theoretical calculations using core+p and core+p+p cluster models. See also companion paper 2018Gr12 for analyses based on systematics and theoretical calculations.

doi: 10.1103/PhysRevC.98.064308
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2018PA43      Phys.Rev. C 98, 034608 (2018)

Yu.L.Parfenova, L.V.Grigorenko, I.A.Egorova, N.B.Shulgina, J.S.Vaagen, M.V.Zhukov

From Coulomb excitation cross sections to nonresonant astrophysical rates in three-body systems: The 17Ne case

NUCLEAR REACTIONS C, Si, Pb(17Ne, X), E=500 MeV/nucleon; calculated σ, and 17Ne E1 strength function extrapolated to astrophysical energies, eikonal model cross sections of the nuclear, E1 nuclear, and E1 Coulomb dissociation on Pb target, EMD cross sections. 15O(2p, γ)17Ne, T9=0.02-10; calculated astrophysical non-resonant radiative capture rate. Three-body hyperspherical harmonic (HH) method. Comparison with experimental data.

doi: 10.1103/PhysRevC.98.034608
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2018XU04      Phys.Rev. C 97, 034305 (2018)

X.-D.Xu, I.Mukha, L.V.Grigorenko, C.Scheidenberger, L.Acosta, E.Casarejos, V.Chudoba, A.A.Ciemny, W.Dominik, J.Duenas-Diaz, V.Dunin, J.M.Espino, A.Estrade, F.Farinon, A.Fomichev, H.Geissel, T.A.Golubkova, A.Gorshkov, Z.Janas, G.Kaminski, O.Kiselev, R.Knobel, S.Krupko, M.Kuich, Yu.A.Litvinov, G.Marquinez-Duran, I.Martel, C.Mazzocchi, C.Nociforo, A.K.Orduz, M.Pfutzner, S.Pietri, M.Pomorski, A.Prochazka, S.Rymzhanova, A.M.Sanchez-Benitez, P.Sharov, H.Simon, B.Sitar, R.Slepnev, M.Stanoiu, P.Strmen, I.Szarka, M.Takechi, Y.K.Tanaka, H.Weick, M.Winkler, J.S.Winfield

Spectroscopy of excited states of unbound nuclei 30Ar and 29Cl

NUCLEAR REACTIONS 9Be(31Ar, 30Ar), (20Mg, 19Mg), E=620 MeV/nucleon, [secondary 31Ar and 20Mg beams from 9Be(36Ar, X), E=885 MeV/nucleon followed by separation of 31Ar fragments using FRS at GSI]; measured reaction products, A/Q versus Z yield distributions, proton spectra, trajectories of in-flight decay products 28S+p+p, 28S+p, 17Ne+p+p, (28Si)pp-, (29Cl)p-, and (17Ne)pp-coin, (28Si)p(θ) and (17Ne)p(θ) from 2p-decays of states in 30Ar and 19Mg. 30Ar, 29Cl, 28S, 19Mg, 18Na; deduced ground states and unbound levels, two-proton decay widths of 30Ar and 19Mg ground states; discussed simultaneous and sequential two-proton decays from ground and excited states of 30Ar and 19Mg, Thomas-Ehrman effect in 29Cl-29Mg and 30Mg-30Ar mirror partners. Comparison with shell-model predictions.

RADIOACTIVITY 30Ar, 19Mg(2p)[from 9Be(31Ar, 30Ar), (20Mg, 19Mg) reactions at GSI]; measured proton spectra; deduced ground state of 30Ar above the two-proton emission threshold.

doi: 10.1103/PhysRevC.97.034305
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2017GR04      Phys.Rev. C 95, 021601 (2017)

L.V.Grigorenko, T.A.Golubkova, J.S.Vaagen, M.V.Zhukov

Decay mechanism and lifetime of 67Kr

RADIOACTIVITY 67Kr(2p); calculated half-life as function of p-wave ground-state resonance energy in 66Br, and from three-body model results for P3 and P5 potentials producing different configuration mixings, energy correlations between the 65Se core and one of the protons in 2p decay of 67Kr. Improved direct decay model (IDDM). Comparison with experimental value of T1/2.

doi: 10.1103/PhysRevC.95.021601
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2017RY01      Acta Phys.Pol. B48, 683 (2017)

S.A.Rymzhanova, L.V.Grigorenko, I.A.Egorova, A.G.Knyazev, Y.L.Parfenova, P.G.Sharov

Three-body Correlations Data Analysis Through Monte Carlo Simulation in Decay of 10He

NUCLEAR REACTIONS 3H(8He, p)10He, E*=0-8 MeV. 10He; calculated neutron halo nucleus three-body decay (2n plus 8He) corresponding to 0+, 1- and 2+ states - 10He angular correlations, energy distribution between the neutron pair using TEG-DDR Monte Carlo event generator simulations. Compared with published data.

doi: 10.5506/APhysPolB.48.683
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2017SH29      Phys.Rev. C 96, 025807 (2017)

P.G.Sharov, A.S.Fomichev, A.A.Bezbakh, V.Chudoba, I.A.Egorova, M.S.Golovkov, T.A.Golubkova, A.V.Gorshkov, L.V.Grigorenko, G.Kaminski, A.G.Knyazev, S.A.Krupko, M.Mentel, E.Yu.Nikolskii, Yu.L.Parfenova, P.Pluchinski, S.A.Rymzhanova, S.I.Sidorchuk, R.S.Slepnev, S.V.Stepantsov, G.M.Ter-Akopian, R.Wolski

Search for 2p decay of the first excited state of 17Ne

NUCLEAR REACTIONS 1H(18Ne, d), E=35 MeV/nucleon, [18Ne secondary beam from 9Be(20Ne, X), E=53 MeV/nucleon primary reaction]; measured deuterons, dpp-coin, time-of-flight, energy loss, missing mass and excitation energy spectra of 17Ne at Flerov Laboratory of Nuclear Reactions at JINR-Dubna. 17Ne; deduced level, upper limit of 2p-decay branch (Γ2pγ) of the first excited state of 17Ne and comparison with theoretical predictions.

doi: 10.1103/PhysRevC.96.025807
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2016XU08      Yuan.Wul.Ping. 33, 197 (2016); Nucl.Phys.Rev. 33, 197 (2016)

X.Xu, I.Mukha, L.Acosta, E.Casarejos, A.A.Ciemny, W.Dominik, J.Duenas-Diaz, V.Dunin, J.M.Espino, A.Estrade, F.Farinon, H.Geissel, A.Fomichev, T.A.Golubkova, A.Gorshkov, L.V.Grigorenko, Z.Janas, G.Kaminski, O.Kiselev, R.Knobel, S.Krupko, M.kuich, Yu.A.Litvinov, G.Marquinez-Duran, I.Martel, C.Mazzocchi, C.Nociforo, A.K.Orduz, M.Pfutzner, S.Pietri, M.Pomorski, A.Prochazka, S.Rymzhanova, A.M.Sanchez-Benitez, C.Scheidenberger, P.Sharov, H.Simon, B.Sitar, R.Slepnev, M.Stanoiu, P.Strmen, I.Szarka, M.Takechi, Y.K.Tanaka, H.Weick, M.Winkler, J.S.Winfield

Revisit to Two-Proton Radioactivity of 19Mg and Observation of Two-Proton Decay of 30Ar

RADIOACTIVITY 19Mg, 30Ar(2p); measured decay products, Ep, Ip; deduced energies, excited states.

doi: 10.11804/NuclPhysRev.33.02.197#
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2015BR11      Phys.Rev. C 92, 034329 (2015)

K.W.Brown, R.J.Charity, L.G.Sobotka, L.V.Grigorenko, T.A.Golubkova, S.Bedoor, W.W.Buhro, Z.Chajecki, J.M.Elson, W.G.Lynch, J.Manfredi, D.G.McNeel, W.Reviol, R.Shane, R.H.Showalter, M.B.Tsang, J.R.Winkelbauer, A.H.Wuosmaa

Interplay between sequential and prompt two-proton decay from the first excited state of 16Ne

NUCLEAR REACTIONS 9Be(17Ne, 16Ne), E=57.6 MeV/nucleon; analyzed results of experimental measurements reported in their 2014Br19 work carried out at NSCL-MSU. 16Ne; analyzed relative energy spectra and few-body correlations of 14O+2p and 13N+3p events; deduced level energies and widths of g.s. and first 2+ state from kinematic analysis of 14O+p+p events, and those of higher levels from analysis of the 13N+p+p+p events. Sequential and diprotonlike decays deduced from correlation pattern reproduced in three-body 14O+p+p calculations. 15F, 14O, 13N; deduced levels, J, π from particle decays of states in 16Ne.

doi: 10.1103/PhysRevC.92.034329
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2015GR04      Phys.Rev. C 91, 024325 (2015)

L.V.Grigorenko, T.A.Golubkova, M.V.Zhukov

Thomas-Ehrman effect in a three-body model: The 16Ne case

NUCLEAR STRUCTURE 16Ne, 16C; analyzed structure of 0+ and 2+ states, dynamic mechanism of the Thomas-Ehrman shift (TES) in three-cluster systems; predicted configuration mixings for 0+ and 2+ states. 15F; predicted energy of unbound 1/2+ ground state. Comparison with experimental data.

doi: 10.1103/PhysRevC.91.024325
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2015GR09      Phys.Rev. C 91, 064617 (2015)

L.V.Grigorenko, M.V.Zhukov

Continuum excitations of 26O in a three-body model: 0+ and 2+ states

NUCLEAR STRUCTURE 26O; calculated levels, energies of 0+ and 2+ continuum excitations in a three-cluster 24O+n+n theoretical model; predicted sequence of three 0+ monopole excited states, as probable analogs of Efimov states. Discussed correlation between the predicted 26O spectrum and experimental observations.

doi: 10.1103/PhysRevC.91.064617
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2015MU13      Phys.Rev.Lett. 115, 202501 (2015)

I.Mukha, L.V.Grigorenko, X.Xu, L.Acosta, E.Casarejos, A.A.Ciemny, W.Dominik, J.Duenas-Diaz, V.Dunin, J.M.Espino, A.Estrade, F.Farinon, A.Fomichev, H.Geissel, T.A.Golubkova, A.Gorshkov, Z.Janas, G.Kaminski, O.Kiselev, R.Knobel, S.Krupko, M.Kuich, Yu.A.Litvinov, G.Marquinez-Duran, I.Martel, C.Mazzocchi, C.Nociforo, A.K.Orduz, M.Pfutzner, S.Pietri, M.Pomorski, A.Prochazka, S.Rymzhanova, A.M.Sanchez-Benitez, C.Scheidenberger, P.Sharov, H.Simon, B.Sitar, R.Slepnev, M.Stanoiu, P.Strmen, I.Szarka, M.Takechi, Y.K.Tanaka, H.Weick, M.Winkler, J.S.Winfield, M.V.Zhukov

Observation and Spectroscopy of New Proton-Unbound Isotopes 30Ar and 29Cl: An Interplay of Prompt Two-Proton and Sequential Decay

NUCLEAR REACTIONS 9Be(31Ar, X)30Ar/29Cl, E=620 MeV/nucleon; measured reaction products, Ep, Ip; deduced ground state energies, J, π.

RADIOACTIVITY 19Mg, 30Ar(2p); measured decay products, Ep, Ip; deduced T1/2 limits.

doi: 10.1103/PhysRevLett.115.202501
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2014BR19      Phys.Rev.Lett. 113, 232501 (2014)

K.W.Brown, R.J.Charity, L.G.Sobotka, Z.Chajecki, L.V.Grigorenko, I.A.Egorova, Yu.L.Parfenova, M.V.Zhukov, S.Bedoor, W.W.Buhro, J.M.Elson, W.G.Lynch, J.Manfredi, D.G.McNeel, W.Reviol, R.Shane, R.H.Showalter, M.B.Tsang, J.R.Winkelbauer, A.H.Wuosmaa

Observation of Long-Range Three-Body Coulomb Effects in the Decay of 16Ne

RADIOACTIVITY 16Ne(2p) [from Be(17Ne, X), E=57.6 MeV/nucleon]; measured decay products, Ep, Ip; deduced resonance width limit, correlations between the momenta of the three decay products, dependence on the long-range nature of the Coulomb interaction. Comparison with theoretical calculations, available data.

doi: 10.1103/PhysRevLett.113.232501
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2014SH23      Phys.Rev. C 90, 024610 (2014)

P.G.Sharov, I.A.Egorova, L.V.Grigorenko

Anomalous population of 10He states in reactions with 11Li

NUCLEAR REACTIONS 1H(11Li, 10He), E not given; calculated excitation functions for population of different states in 10He through proton knockout reaction; deduced superposition of 1-, 0+ and 2+ states rather than resonant 0+ ground state for the experimentally observed resonance at 1.2-1.5 MeV, with 1- state calculated as the lowest excitation in 10He, and its ground-state at approximately 2.1 MeV instead of 1.3 MeV. Discussed three-body correlations in 10He, α-knockout from 14Be, core-recoil effect, halo structure, and constraints on the spectrum of 9He. Sudden removal of proton and three-body model.

doi: 10.1103/PhysRevC.90.024610
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2013GR08      Phys.Rev.Lett. 111, 042501 (2013)

L.V.Grigorenko, I.G.Mukha, M.V.Zhukov

Lifetime and Fragment Correlations for the Two-Neutron Decay of 26O Ground State

RADIOACTIVITY 26O(2n); calculated T1/2 as a function of decay energy, width as a function of generalized (hyperspherical) angular momentum, correlations in different models. Three-body model, comparison with available data.

doi: 10.1103/PhysRevLett.111.042501
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2013SI09      Bull.Rus.Acad.Sci.Phys. 77, 355 (2013); Izv.Akad.Nauk RAS, Ser.Fiz 77, 398 (2013)

S.I.Sidorchuk, A.A.Bezbakh, R.Wolski, M.S.Golovkov, A.V.Gorshkov, V.A.Gorshkov, L.V.Grigorenko, I.A.Egorova, G.Kaminski, S.A.Krupko, E.A.Kuzmin, E.Yu.Nikolskii, Yu.Ts.Oganessian, Yu.L.Parfenova, R.S.Slepnev, S.V.Stepantsov, G.M.Ter-Akopian, A.S.Fomichev, V.Chudoba, P.G.Sharov, P.Jaluvkova

Correlation Investigations of the Low-Energy 10He Spectrum

NUCLEAR REACTIONS 3H(8He, p), E=21.5 MeV/nucleon; measured reaction products, Ep, Ip; deduced missing mass spectrum, J, π of excited states. Comparison with available data.

doi: 10.3103/S1062873813040278
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2012AS02      Acta Phys.Pol. B43, 261 (2012)

P.Ascher, N.Adimi, L.Audirac, B.Blank, F.Delalee, C.-E.Demonchy, J.Giovinazzo, T.Kurtukian-Nieto, S.Leblanc, J.-L.Pedroza, J.Pibernat, L.Serani, F.de Oliveira Santos, S.Grevy, J.-C.Thomas, L.Perrot, P.Srivastava, C.Borcea, I.Companis, L.V.Grigorenko, B.A.Brown

Two Proton Radioactivity Studies with a Time Projection Chamber

RADIOACTIVITY 45Fe, 54Zn(2p) [from Ni(58Ni, X), E=74.5 MeV/nucleon]; measured decay products, Ep, Ip; deduced angular and energy distributions between two protons. Comparison with MSU experiment.

doi: 10.5506/APhysPolB.43.261
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2012EG03      Phys.Rev.Lett. 109, 202502 (2012)

I.A.Egorova, R.J.Charity, L.V.Grigorenko, Z.Chajecki, D.Coupland, J.M.Elson, T.K.Ghosh, M.E.Howard, H.Iwasaki, M.Kilburn, Jenny Lee, W.G.Lynch, J.Manfredi, S.T.Marley, A.Sanetullaev, R.Shane, D.V.Shetty, L.G.Sobotka, M.B.Tsang, J.Winkelbauer, A.H.Wuosmaa, M.Youngs, M.V.Zhukov

Democratic Decay of 6Be Exposed by Correlations

NUCLEAR REACTIONS Be(7Be, X)6Be, E=70 MeV/nucleon; measured reaction products, Eα, Iα, Ep, Ip; deduced three-body energy-angular correlations, three-body democratic decay. Comparison with a three-cluster-model calculations.

doi: 10.1103/PhysRevLett.109.202502
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2012FO02      Phys.Lett. B 708, 6 (2012)

A.S.Fomichev, V.Chudoba, I.A.Egorova, S.N.Ershov, M.S.Golovkov, A.V.Gorshkov, V.A.Gorshkov, L.V.Grigorenko, G.Kaminski, S.A.Krupko, I.G.Mukha, Yu.L.Parfenova, S.I.Sidorchuk, R.S.Slepnev, L.Standylo, S.V.Stepantsov, G.M.Ter-Akopian, R.Wolski, M.V.Zhukov

Isovector soft dipole mode in 6Be

NUCLEAR REACTIONS 1H(6Li, 6Be), E=47 MeV/nucleon; measured reaction products. 6Be; deduced σ(θ), J, π, population of continuum states by detecting α+p+p coincidences, negative parity states, isovector soft dipole mode associated with the 6Li ground state. Comparison with Monte-Carlo calculations.

doi: 10.1016/j.physletb.2012.01.004
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2012FO24      J.Phys.:Conf.Ser. 337, 012025 (2012)

A.S.Fomichev, G.M.Ter-Akopian, A.A.Bezbakh, V.Chudoba, A.V.Daniel, M.S.Golovkov, A.V.Gorshkov, V.A.Gorshkov, L.V.Grigorenko, G.Kaminski, S.A.Krupko, Y.Ts.Oganessian, Y.L.Parfenova, S.I.Sidorchuk, R.S.Slepnev, L.Standylo, S.V.Stepantsov, R.Wolski, S.N.Ershov, V.K.Lukyanov, B.V.Danilin, A.A.Korsheninnikov, V.Z.Goldberg, M.Pfutzner, I.G.Mukha, H.Simon, O.B.Tarasov, N.K.Timofeyuk, M.V.Zhukov

Status of the ACCULINNA-2 project at FLNR

doi: 10.1088/1742-6596/337/1/012025
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2012GR21      Phys.Rev. C 86, 061602 (2012)

L.V.Grigorenko, I.A.Egorova, R.J.Charity, M.V.Zhukov

Sensitivity of three-body decays to the reactions mechanism and the initial structure by example of 6Be

NUCLEAR STRUCTURE 6Be; calculated excitation spectra of 0+ and 2+ states as function of the spin composition of the source function, dependence of the 6Be excitation spectra on the radius parameter r0 of the 7Be; analyzed neutron-knockout reactions on 7Be reaction mechanism, effects of initial-state structure, three-body decay. Comparison with experimental data.

doi: 10.1103/PhysRevC.86.061602
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2012SI07      Phys.Rev.Lett. 108, 202502 (2012)

S.I.Sidorchuk, A.A.Bezbakh, V.Chudoba, I.A.Egorova, A.S.Fomichev, M.S.Golovkov, A.V.Gorshkov, V.A.Gorshkov, L.V.Grigorenko, P.Jaluvkova, G.Kaminski, S.A.Krupko, E.A.Kuzmin, E.Yu.Nikolskii, Yu.Ts.Oganessian, Yu.L.Parfenova, P.G.Sharov, R.S.Slepnev, S.V.Stepantsov, G.M.Ter-Akopian, R.Wolski, A.A.Yukhimchuk, S.V.Filchagin, A.A.Kirdyashkin, I.P.Maksimkin, O.P.Vikhlyantsev

Structure of 10He Low-Lying States Uncovered by Correlations

NUCLEAR REACTIONS 3H(8He, p), E=21.5 MeV/nucleon; measured reaction products, Ep, Ip. 10He; deduced σ, ground and low-lying state energies, J, π, resonance width. Comparison with available data.

doi: 10.1103/PhysRevLett.108.202502
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2012TE04      Bull.Rus.Acad.Sci.Phys. 76, 1172 (2012); Izv.Akad.Nauk RAS, Ser.Fiz 76, 1311 (2012)

G.M.Ter-Akopian, A.A.Bezbakh, R.Wolski, M.S.Golovkov, A.V.Gorshkov, V.A.Gorshkov, L.V.Grigorenko, I.A.Egorova, G.Kaminski, S.A.Krupko

Research program for the radioactive beams of the ACCULINNA-2 separator

doi: 10.3103/S1062873812110226
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2011AS08      Phys.Rev.Lett. 107, 102502 (2011)

P.Ascher, L.Audirac, N.Adimi, B.Blank, C.Borcea, B.A.Brown, I.Companis, F.Delalee, C.E.Demonchy, F.de Oliveira Santos, J.Giovinazzo, S.Grevy, L.V.Grigorenko, T.Kurtukian-Nieto, S.Leblanc, J.-L.Pedroza, L.Perrot, J.Pibernat, L.Serani, P.C.Srivastava, J.-C.Thomas

Direct Observation of Two Protons in the Decay of 54Zn

RADIOACTIVITY 54Zn(2p) [from Ni(58Ni, X), E=75.5 MeV/nucleon]; measured decay products, proton spectra; deduced branching ratio, total decay energy, angular and energy correlations, T1/2. Comparison with theoretical calculations.

doi: 10.1103/PhysRevLett.107.102502
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2011BL01      Acta Phys.Pol. B42, 545 (2011)

B.Blank, P.Ascher, L.Audirac, G.Canchel, J.Giovinazzo, T.Kurtukian-Nieto, F.de Oliveira Santos, S.Grevy, J.-C.Thomas, C.Borcea, L.V.Grigorenko

Two-proton Radioactivity as a Tool of Nuclear Structure Studies

RADIOACTIVITY 45Fe, 54Zn(2p); measured proton spectra; deduced T1/2, proton energy and angular distributions.

doi: 10.5506/APhysPolB.42.545
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2011FO08      Int.J.Mod.Phys. E20, 1491 (2011)

A.S.Fomichev, I.G.Mukha, S.V.Stepantsov, L.V.Grigorenko, E.V.Litvinova, V.Chudoba, I.A.Egorova, M.S.Golovkov, A.V.Gorshkov, V.A.Gorshkov, G.Kaminski, S.A.Krupko, Yu.L.Parfenova, S.I.Sidorchuk, R.S.Slepnev, G.M.Ter-Akopian, R.Wolski, M.V.Zhukov

Lifetime of 26S and a limit for its 2p decay energy

NUCLEAR STRUCTURE 24,26S, 25P; calculated ground state function width, T1/2, energies and charge radii, pairing gap. RMF approach, three-cluster decay model.

RADIOACTIVITY 25P(p), 26S(2p) [from Be(32S, X)26S/25P, E=50.3 MeV/nucleon]; measured reaction products, TOF, Ep, Ip; deduced yields, T1/2 limits. Comparison with other data.

doi: 10.1142/S0218301311018216
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2011GR05      Acta Phys.Pol. B42, 555 (2011)

L.V.Grigorenko, E.V.Litvinova, M.V.Zhukov

Recent Advances in Theoretical Studies of 2p Radioactivity: Nuclear Many-body Structure in Three-body Model

RADIOACTIVITY 26S(2p); calculated ground state width as a function of the decay energy. RMF calculations, three-cluster decay model.

doi: 10.5506/APhysPolB.42.555
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2011GR13      Phys.Rev. C 84, 021303 (2011)

L.V.Grigorenko, I.G.Mukha, C.Scheidenberger, M.V.Zhukov

Two-neutron radioactivity and four-nucleon emission from exotic nuclei

RADIOACTIVITY 7H, 18Be, 28O(4n); 25O(n); 26O(2n); 25P(p); 26S(2p); calculated widths and half-lives for different orbital configurations. Proposed experimental method for detection of spontaneous neutron radioactivity. Discussed 4n versus 4p radioactivity.

doi: 10.1103/PhysRevC.84.021303
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2010GR06      Phys.Rev. C 82, 014615 (2010)

L.V.Grigorenko, I.A.Egorova, M.V.Zhukov, R.J.Charity, K.Miernik

Two-proton radioactivity and three-body decay. V. Improved momentum distributions

RADIOACTIVITY 6Be, 19Mg, 54Fe(2p); calculated classical trajectories, energy distribution, momentum density distribution contour maps, angular distributions and inclusive energies for true three-body decays. Exactly solvable semianalytical models with simplified three-body Hamiltonians. Discussed effect of screening by atomic electrons. Comparison with experimental data.

doi: 10.1103/PhysRevC.82.014615
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2010MI01      Acta Phys.Pol. B41, 449 (2010)

S.Mianowski, H.Czyrkowski, R.Dabrowski, W.Dominik, Z.Janas, K.Miernik, M.Pfutzner, A.S.Fomichev, M.S.Golovkov, L.V.Grigorenko, S.A.Krupko, S.I.Sidorchuk, R.S.Slepnev, S.V.Stepantsov, G.M.Ter-Akopian

Imaging the Decay of 8He

RADIOACTIVITY 8He(β-) [from C(11B, X)8He, E=33 MeV/nucleon];measured recoils, β-delayed decays, Eα, Iα, It, Et, In, En; deduced feasibility of β-decay studies of 8He.


2010SI08      Bull.Rus.Acad.Sci.Phys. 74, 437 (2010); Izv.Akad.Nauk RAS, Ser.Fiz 74, 473 (2010)

S.I.Sidorchuk, R.Wolski, M.S.Golovkov, V.A.Gorshkov, L.V.Grigorenko, S.A.Krupko, Yu.Ts.Oganessian, A.M.Rodin, R.S.Slepnev, S.V.Stepantsov, G.M.Ter-Akopian, A.S.Fomichev

Investigation of the 6He structure in quasi free scattering reactions

NUCLEAR REACTIONS 4He(6He, 2α), (6He, αt), E=25 MeV/nucleon; measured reaction products; deduced momentum correlations for quasi-free scattering, σ, cluster structures.

doi: 10.3103/S1062873810040039
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2010SI23      Nucl.Phys. A840, 1 (2010)

S.I.Sidorchuk, A.S.Fomichev, M.S.Golovkov, L.V.Grigorenko, V.A.Gorshkov, A.V.Gorshkov, S.A.Krupko, Yu.Ts.Oganessian, A.M.Rodin, R.S.Slepnev, S.V.Stepantsov, G.M.Ter-Akopian, R.Wolski, A.A.Korsheninnikov, E.Yu.Nikolskii, P.Roussel-Chomaz, W.Mittig

Study of the 6He structure in the reaction of quasifree scattering 4He(6He, 2α)

NUCLEAR REACTIONS 4He(6He, 2α), E=25 MeV/nucleon; measured Eα, Iα, αα-coin; deduced σ, σ(θ), neutron momentum spectrum and reaction mechanism features. Monte-Carlo simulation and PWIA of quasi-free scattering. Secondary radioactive beam.

doi: 10.1016/j.nuclphysa.2010.04.002
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2009FO09      Eur.Phys.J. A 42, 465 (2009)

A.S.Fomichev, L.V.Grigorenko, M.S.Golovkov, G.M.Ter-Akopian, Yu.Ts.Oganessian, V.A.Gorshkov, S.A.Krupko, A.M.Rodin, S.I.Sidorchuk, R.S.Slepnev, S.V.Stepantsov, R.Wolski, V.Chudoba, A.A.Korsheninnikov, E.A.Kuzmin, E.Yu.Nikolskii, B.G.Novatskii, D.N.Stepanov, P.Roussel-Chomaz, W.Mittig, D.Pang, A.Ninane, F.Hanappe, L.Stuttge, A.A.Yukhimchuk, V.V.Perevozchikov, Yu.I.Vinogradov, S.K.Grishechkin, S.V.Zlatoustovskiy

Properties of very n -rich He isotopes

NUCLEAR REACTIONS 3H(6He, p), (8He, p), E=25, 27.4 MeV/nucleon; 6,8He; measured reaction products; deduced missing mass spectra, resonance J, π, energy, yields. Comparison with other results.

doi: 10.1140/epja/i2008-10739-6
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2009GO01      Phys.Lett. B 672, 22 (2009)

M.S.Golovkov, L.V.Grigorenko, G.M.Ter-Akopian, A.S.Fomichev, Yu.Ts.Oganessian, V.A.Gorshkov, S.A.Krupko, A.M.Rodin, S.I.Sidorchuk, R.S.Slepnev, S.V.Stepantsov, R.Wolski, D.Y.Pang, V.Chudoba, A.A.Korsheninnikov, E.A.Kuzmin, E.Yu.Nikolskii, B.G.Novatskii, D.N.Stepanov, P.Roussel-Chomaz, W.Mittig, A.Ninane, F.Hanappe, L.Stuttge, A.A.Yukhimchuk, V.V.Perevozchikov, Yu.I.Vinogradov, S.K.Grishechkin, S.V.Zlatoustovskiy

The 8He and 10He spectra studied in the (t, p) reaction

NUCLEAR REACTIONS 3H(6He, p), E=25 MeV/nucleon; 3H(8He, p), E=27.4 MeV/nucleon; measured fragment, proton energies, (fragment)(proton)-coin and missing mass spectra; deduced σ. 6,8He deduced ground state energies, E1 strength distribution. Comparison with other data and calculations. Secondary radioactive beam.

doi: 10.1016/j.physletb.2008.12.052
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2009GR03      Phys.Part. and Nucl.Lett. 6, 118 (2009)

L.V.Grigorenko, M.S.Golovkov, G.M.Ter-Akopian, A.S.Fomichev, Yu.Ts.Oganessian, V.A.Gorshkov, S.A.Krupko, A.M.Rodin, S.I.Sidorchuk, R.S.Slepnev, S.V.Stepantsov, R.Wolski, D.Y.Pang, V.Chudoba, A.A.Korsheninnikov, E.A.Kuzmin, E.Yu.Nikolskii, B.G.Novatskii, D.N.Stepanov, P.Roussel-Chomaz, W.Mittig, A.Ninane, F.Hanappe, L.Stuttge, A.A.Yukhimchuk, V.V.Perevozchikov, Yu.I.Vinogradov, S.K.Grishechkin, S.V.Zlatoustovskiy

Soft dipole mode in 8He

NUCLEAR REACTIONS 3H(6He, p), E not given; measured Ep, Ip, cross sections. Deduced B(E1).

doi: 10.1134/S1547477109020046
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2009GR07      Phys.Lett. B 677, 30 (2009)

L.V.Grigorenko, T.D.Wiser, K.Miernik, R.J.Charity, M.Pfutzner, A.Banu, C.R.Bingham, M.Cwiok, I.G.Darby, W.Dominik, J.M.Elson, T.Ginter, R.Grzywacz, Z.Janas, M.Karny, A.Korgul, S.N.Liddick, K.Mercurio, M.Rajabali, K.Rykaczewski, R.Shane, L.G.Sobotka, A.Stolz, L.Trache, R.E.Tribble, A.H.Wuosmaa, M.V.Zhukov

Complete correlation studies of two-proton decays: 6Be and 45Fe

NUCLEAR REACTIONS 1H(10B, n), E not given; Ni(58Ni, X)45Fe, E=161 MeV/nucleon; measured Ep, Ip, Eα, Iα, product energy and angular correlation distributions in a kinematically complete experiment. Comparison with three-body cluster model.

RADIOACTIVITY 6Be, 45Fe(2p); measured energy and angular correlation distributions.

doi: 10.1016/j.physletb.2009.04.085
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2009GR11      Phys.Rev. C 80, 034602 (2009)

L.V.Grigorenko, T.D.Wiser, K.Mercurio, R.J.Charity, R.Shane, L.G.Sobotka, J.M.Elson, A.H.Wuosmaa, A.Banu, M.McCleskey, L.Trache, R.E.Tribble, M.V.Zhukov

Three-body decay of 6Be

NUCLEAR REACTIONS 1H(10B, n)10C, E=15 MeV/nucleon; measured Ep, Ip, Eα, Iα, energy and angular correlation distributions in a kinematically complete experiment. Comparison with three-body cluster model.

RADIOACTIVITY 6Be(2p)[from 10C(α)]; measured Ep, Iπ, angular distributions.

NUCLEAR STRUCTURE 6Be, 6He; calculated densities and radial properties of ground-state wave functions. Three-body hyperspherical-harmonics cluster model.

doi: 10.1103/PhysRevC.80.034602
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2008GR05      Phys.Rev. C 77, 034611 (2008)

L.V.Grigorenko, M.V.Zhukov

Problems with the interpretation of the 10He ground state

NUCLEAR STRUCTURE 10He; calculated continuum population σ(θ), widths of excited states. Comparisons with experimental data.

doi: 10.1103/PhysRevC.77.034611
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2007GO24      Phys.Rev. C 76, 021605 (2007)

M.S.Golovkov, L.V.Grigorenko, A.S.Fomichev, A.V.Gorshkov, V.A.Gorshkov, S.A.Krupko, Yu.Ts.Oganessian, A.M.Rodin, S.I.Sidorchuk, R.S.Slepnev, S.V.Stepantsov, G.M.Ter-Akopian, R.Wolski, A.A.Korsheninnikov, E.Yu.Nikolskii, V.A.Kuzmin, B.G.Novatskii, D.N.Stepanov, P.Roussel-Chomaz, W.Mittig

New insight into the low-energy 9He spectrum

NUCLEAR REACTIONS 2H(8He, p), E=25 MeV/nucleon; measured particle energy and missing mass spectra. 8He deduced levels, J, π.

doi: 10.1103/PhysRevC.76.021605
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2007GO41      Eur.Phys.J. Special Topics 150, 23 (2007)

M.S.Golovkov, L.V.Grigorenko, A.S.Fomichev, A.V.Gorshkov, V.A.Gorshkov, S.A.Krupko, Yu.Ts.Oganessian, A.M.Rodin, S.I.Sidorchuk, R.S.Slepnev, S.V.Stepantsov, G.M.Ter-Akopian, R.Wolski, A.A.Korsheninnikov, E.Yu.Nikolskii, V.A.Kuzmin, B.G.Novatskii, D.N.Stepanov, S.Fortier, P.Roussel-Chomaz, W.Mittig

Properties of low-lying 9He state

NUCLEAR REACTIONS 2H(8He, p), E=25 MeV/nucleon; measured proton and 8He energies. 9He; deduced resonance parameters.

doi: 10.1140/epjst/e2007-00256-x
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2007GR12      Phys.Rev. C 76, 014008 (2007)

L.V.Grigorenko, M.V.Zhukov

Two-proton radioactivity and three-body decay. III. Integral formulas for decay widths in a simplified semianalytical approach

RADIOACTIVITY 17Ne(2p), 45Fe(2p); calculated decay widths of resonant states using a semiclassical approach with simplified three-body Hamiltonian.

doi: 10.1103/PhysRevC.76.014008
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2007GR13      Phys.Rev. C 76, 014009 (2007)

L.V.Grigorenko, M.V.Zhukov

Two-proton radioactivity and three-body decay. IV. Connection to quasiclassical formulation

RADIOACTIVITY 17Ne(2p), 45Fe(2p); calculated quasiclassical expressions for the three-body decay widths.

doi: 10.1103/PhysRevC.76.014009
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2007TE12      Eur.Phys.J. Special Topics 150, 61 (2007)

G.M.Ter-Akopian, A.S.Fomichev, M.S.Golovkov, L.V.Grigorenko, S.A.Krupko, Yu.Ts.Oganessian, A.M.Rodin, S.I.Sidorchuk, R.S.Slepnev, S.V.Stepantsov, R.Wolski, A.A.Korsheninnikov, E.Yu.Nikolskii, P.Roussel-Chomaz, W.Mittig, V.A.Kuzmin, B.G.Novatskii, D.N.Stepanov

Neutron excess nuclei of hydrogen and helium at ACCULINNA

NUCLEAR REACTIONS 2H(8He, 3He), E≈ 25 MeV/nucleon; measured 3He, 3H energies, yields and coincidences. Deduced 7H missing mass spectrum, limit for the reaction exit channel populating a resonance lying 0-3 MeV above decay threshold. 4He(6He, 2α), E=25 MeV/nucleon; measured Eα, Iα, αα-coin, angular and momentum distributions. Deduced cross section.

doi: 10.1140/epjst/e2007-00267-7
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2006GR20      Phys.Lett. B 641, 254 (2006)

L.V.Grigorenko, K.Langanke, N.B.Shulgina, M.V.Zhukov

Soft dipole mode in 17Ne and the astrophysical 2p capture on 15O

NUCLEAR STRUCTURE 16F, 17Ne; calculated level energies, E1 transitions strength function. Three-body model.

NUCLEAR REACTIONS Au, Pb(17Ne, 15OX), E=50, 240, 500 MeV/nucleon; calculated two-proton removal σ. Two-proton capture rates in astrophysical conditions discussed.

doi: 10.1016/j.physletb.2006.08.054
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2005CH49      Nucl.Phys. A759, 23 (2005)

L.V.Chulkov, H.Simon, I.J.Thompson, T.Aumann, M.J.G.Borge, Th.W.Elze, H.Emling, H.Geissel, L.V.Grigorenko, M.Hellstrom, B.Jonson, J.W.V.Kratz, R.Kulessa, K.Markenroth, M.Meister, G.Munzenberg, F.Nickel, T.Nilsson, G.Nyman, V.Pribora, A.Richter, K.Riisager, C.Scheidenberger, G.Schrieder, O.Tengblad, M.V.Zhukov

Three-body correlations in electromagnetic dissociation of Borromean nuclei: The 6He case

NUCLEAR REACTIONS Pb(6He, 2nα), E=240 MeV/nucleon; measured Eα, En, three-body energy and angular correlations; deduced role of final state interactions, other reaction mechanism features. 6He deduced possible resonance.

doi: 10.1016/j.nuclphysa.2005.05.001
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2005DO20      Phys.Rev. C 72, 054315 (2005)

C.Dossat, A.Bey, B.Blank, G.Canchel, A.Fleury, J.Giovinazzo, I.Matea, F.de Oliveira Santos, G.Georgiev, S.Grevy, I.Stefan, J.C.Thomas, N.Adimi, C.Borcea, D.Cortina Gil, M.Caamano, M.Stanoiu, F.Aksouh, B.A.Brown, L.V.Grigorenko

Two-proton radioactivity studies with 45Fe and 48Ni

NUCLEAR REACTIONS Ni(58Ni, X), E=74.5 MeV/nucleon; measured fragments isotopic yields; deduced evidence for 48Ni, 45Fe.

RADIOACTIVITY 45Fe(2p) [from Ni(58Ni, X)]; measured Ep, T1/2, branching ratio. 48Ni; measured decay energy, T1/2; deduced probable two-proton decay. Comparisons with model predictions.

doi: 10.1103/PhysRevC.72.054315
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2005GO46      Phys.Rev. C 72, 064612 (2005)

M.S.Golovkov, L.V.Grigorenko, A.S.Fomichev, S.A.Krupko, Yu.Ts.Oganessian, A.M.Rodin, S.I.Sidorchuk, R.S.Slepnev, S.V.Stepantsov, G.M.Ter-Akopian, R.Wolski, M.G.Itkis, A.S.Denikin, A.A.Bogatchev, N.A.Kondratiev, E.M.Kozulin, A.A.Korsheninnikov, E.Yu.Nikolskii, P.Roussel-Chomaz, W.Mittig, R.Palit, V.Bouchat, V.Kinnard, T.Materna, F.Hanappe, O.Dorvaux, L.Stuttge, C.Angulo, V.Lapoux, R.Raabe, L.Nalpas, A.A.Yukhimchuk, V.V.Perevozchikov, Yu.I.Vinogradov, S.K.Grishechkin, S.V.Zlatoustovskiy

Correlation studies of the 5H spectrum

NUCLEAR REACTIONS 3H(t, p), E=57.7 MeV; measured decay fragments energy and angular correlations, missing mass spectrum. 5H deduced ground-state energy, J, π, width, excited states features.

doi: 10.1103/PhysRevC.72.064612
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2005GR11      Phys.Rev. C 71, 051604 (2005)

L.V.Grigorenko, Yu.L.Parfenova, M.V.Zhukov

Possibility to study a two-proton halo in 17Ne

NUCLEAR STRUCTURE 17N, 17Ne; calculated level energies, radii, transitions B(E2). 6He, 17Ne; calculated core and valence particle momentum distributions, halo features.

NUCLEAR REACTIONS Be, C(17Ne, 15OX), E=66, 710 MeV/nucleon; calculated two-proton removal σ. Be, C(p, X), (15O, X), (17Ne, X), E=66, 710 MeV; calculated σ.

doi: 10.1103/PhysRevC.71.051604
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2005GR20      Phys.Rev. C 72, 015803 (2005)

L.V.Grigorenko, M.V.Zhukov

Three-body resonant radiative capture reactions in astrophysics

doi: 10.1103/PhysRevC.72.015803
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2005TE05      Eur.Phys.J. A 25, Supplement 1, 315 (2005)

G.M.Ter-Akopian, A.S.Fomichev, M.S.Golovkov, L.V.Grigorenko, S.A.Krupko, Yu.Ts.Oganessian, A.M.Rodin, S.I.Sidorchuk, R.S.Slepnev, S.V.Stepantsov, R.Wolski, A.A.Korsheninnikov, E.Yu.Nikolskii, P.Roussel-Chomaz, W.Mittig, R.Palit, V.Bouchat, V.Kinnard, T.Materna, F.Hanappe, O.Dorvaux, L.Stuttge, C.Angulo, V.Lapoux, R.Raabe, L.Nalpas, A.A.Yukhimchuk, V.V.Perevozchikov, Yu.I.Vinogradov, S.K.Grishechkin, S.V.Zlatoustovskii

New insights into the resonance states of 5H and 5He

NUCLEAR REACTIONS 3H(t, p), E=58 MeV; 2H(6He, t), (6He, 3He), E=132 MeV; measured particle spectra, angular correlations following residual nucleus decay. 5He deduced resonances J, π, IAS features. 5H deduced ground-state resonance energy.

doi: 10.1140/epjad/i2005-06-080-6
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2004GO26      Phys.Lett. B 588, 163 (2004)

M.S.Golovkov, L.V.Grigorenko, A.S.Fomichev, Yu.Ts.Oganessian, Yu.I.Orlov, A.M.Rodin, S.I.Sidorchuk, R.S.Slepnev, S.V.Stepantsov, G.M.Ter-Akopian, R.Wolski

Estimates of the 7H width and lower decay energy limit

NUCLEAR STRUCTURE 7H; calculated decay width vs energy.

NUCLEAR REACTIONS 2H(8He, 7H), E=20.5 MeV/nucleon; measured σ upper limit. 7H deduced T1/2 upper limit, decay energy lower limit.

doi: 10.1016/j.physletb.2004.02.069
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2004GO54      Phys.Rev.Lett. 93, 262501 (2004)

M.S.Golovkov, L.V.Grigorenko, A.S.Fomichev, S.A.Krupko, Yu.Ts.Oganessian, A.M.Rodin, S.I.Sidorchuk, R.S.Slepnev, S.V.Stepantsov, G.M.Ter-Akopian, R.Wolski, M.G.Itkis, A.A.Bogatchev, N.A.Kondratiev, E.M.Kozulin, A.A.Korsheninnikov, E.Yu.Nikolskii, P.Roussel-Chomaz, W.Mittig, R.Palit, V.Bouchat, V.Kinnard, T.Materna, F.Hanappe, O.Dorvaux, L.Stuttge, C.Angulo, V.Lapoux, R.Raabe, L.Nalpas, A.A.Yukhimchuk, V.V.Perevozchikov, Yu.I.Vinogradov, S.K.Grishechkin, S.V.Zlatoustovsky

Observation of Excited States in 5H

NUCLEAR REACTIONS 3H(t, p), E=58 MeV; measured En, Ep, missing mass spectrum following residual nucleus decay. 5H deduced levels, J, π.

doi: 10.1103/PhysRevLett.93.262501
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2004GR03      Eur.Phys.J. A 19, 187 (2004)

L.V.Grigorenko, N.K.Timofeyuk, M.V.Zhukov

Broad states beyond the neutron drip line Examples of 5H and 4n

NUCLEAR STRUCTURE 5H; calculated levels, J, π, widths. 4n, 5H; calculated continuum response, related features. Model with source approach.

doi: 10.1140/epja/i2003-10124-1
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2004GR17      Eur.Phys.J. A 20, 419 (2004)

L.V.Grigorenko

Experimental puzzle of 5H

NUCLEAR STRUCTURE 5H; compiled, analyzed data on ground state energy and width.

doi: 10.1140/epja/i2003-10159-2
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2003GR01      Nucl.Phys. A713, 372 (2003); Erratum Nucl.Phys. A740, 401 (2004)

L.V.Grigorenko, I.G.Mukha, M.V.Zhukov

Prospective candidates for the two-proton decay studies I: structure and Coulomb energies of 17Ne and 19Mg

NUCLEAR STRUCTURE 16,17,18,19N, 16F, 17Ne, 18Na, 19Mg; calculated levels, J, π, configurations, radii. Cluster model.

RADIOACTIVITY 19Mg(2p); calculated two-proton decay widths, T1/2, proton spectra. Cluster model.

doi: 10.1016/S0375-9474(02)01298-8
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2003GR04      Nucl.Phys. A714, 425 (2003)

L.V.Grigorenko, I.G.Mukha, M.V.Zhukov

Prospective candidates for the two-proton decay studies. (II) Exploratory studies of 30Ar, 34Ca, and 45Fe

RADIOACTIVITY 19Mg, 30Ar, 34Ca, 45Fe(2p); calculated two-proton decay widths, T1/2. Three-body model.

doi: 10.1016/S0375-9474(02)01374-X
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2003GR24      Phys.Rev. C 68, 054005 (2003)

L.V.Grigorenko, M.V.Zhukov

Two-proton radioactivity and three-body decay. II. Exploratory studies of lifetimes and correlations

RADIOACTIVITY 45Fe, 48Ni, 54Zn, 58Ge, 62Se, 66Kr(2p); calculated two-proton decay T1/2 vs decay energy. 19Mg, 45Fe(2p); calculated proton momentum correlations. 19Mg, 30Ar, 34Ca, 38Ti, 41,42Cr, 45Fe, 48Ni, 54Zn, 58,59Ge, 62,63Se, 66,67Kr, 71Se(2p); compiled, analyzed two-proton decay T1/2, decay energy, related features. Three-body model.

doi: 10.1103/PhysRevC.68.054005
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2003PF01      Acta Phys.Pol. B34, 2363 (2003)

M.Pfutzner, B.Blank, J.Giovinazzo, E.Badura, C.Bingham, C.Borcea, B.A.Brown, M.Chartier, S.Czajkowski, F.De Oliveira Santos, A.Fleury, H.Geissel, L.V.Grigorenko, R.Grzywacz, M.Hellstrom, Z.Janas, J.Kurcewicz, A.S.Lalleman, M.Lewitowicz, M.J.Lopez Jimenez, V.Maslov, C.Mazzocchi, I.Mukha, G.Munzenberg, C.Plettner, M.S.Pravikoff, E.Roeckl, K.P.Rykaczewski, K.Schmidt, R.S.Simon, M.Stanoiu, J.-C.Thomas

Discovery of the two-proton decay of 45Fe

RADIOACTIVITY 45Fe(2p) [from Be, Ni(58Ni, X)]; measured Ep, T1/2. Mass separator, comparison with model predictions.


2003RO13      Phys.Rev. C 68, 024602 (2003)

G.V.Rogachev, J.J.Kolata, V.Z.Goldberg, L.V.Grigorenko, F.D.Becchetti, P.A.DeYoung, J.D.Hinnefeld, L.O.Lamm, J.Lupton, T.W.O'Donnell, D.A.Roberts, S.Shaheen

Final state interaction or a 3H excited state?

NUCLEAR REACTIONS 1H(6He, α), E=23.9 MeV; measured Eα, Iα; deduced resonance structure, possible three-body final-state interaction. 3H deduced possible excited state.

doi: 10.1103/PhysRevC.68.024602
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2002GR03      Phys.Rev.Lett. 88, 042502 (2002)

L.V.Grigorenko, I.G.Mukha, I.J.Thompson, M.V.Zhukov

Two-Proton Widths of 12O, 16Ne, and Three-Body Mechanism of Thomas-Ehrman Shift

NUCLEAR STRUCTURE 12O, 16Ne; calculated levels J, π, widths, IAS features, two-proton decay widths. Three-body mechanism, comparison with data.

doi: 10.1103/PhysRevLett.88.042502
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2002GR10      Phys.Rev. C65, 044612 (2002)

L.V.Grigorenko, R.C.Johnson, I.J.Thompson, M.V.Zhukov

Two-Proton Events in the 17F(p, 2p)16O Reaction

NUCLEAR REACTIONS 1H(17F, 16O), E=33, 44 MeV; calculated two-proton production σ, contribution from 18Ne excited state decay. Comparison with data.

doi: 10.1103/PhysRevC.65.044612
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2002GR25      Eur.Phys.J. A 15, 125 (2002)

L.V.Grigorenko, R.C.Johnson, I.G.Mukha, I.J.Thompson, M.V.Zhukov

Three-body decays of light nuclei: 6Be, 8Li, 9Be, 12O, 16Ne, and 17Ne

NUCLEAR STRUCTURE 8Li, 6,9Be, 12O, 16Ne; calculated two-proton decay related particle spectra, level widths. Comparisons with data.

RADIOACTIVITY 8Li, 6,9Be, 12O, 16Ne(2p); calculated two-proton decay related particle spectra, level widths. Comparisons with data.

doi: 10.1140/epja/i2001-10239-3
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2002PF02      Eur.Phys.J. A 14, 279 (2002)

M.Pfutzner, E.Badura, C.Bingham, B.Blank, M.Chartier, H.Geissel, J.Giovinazzo, L.V.Grigorenko, R.Grzywacz, M.Hellstrom, Z.Janas, J.Kurcewicz, A.S.Lalleman, C.Mazzocchi, I.Mukha, G.Munzenberg, C.Plettner, E.Roeckl, K.P.Rykaczewski, K.Schmidt, R.S.Simon, M.Stanoiu, J.-C.Thomas

First Evidence for the Two-Proton Decay of 45Fe

RADIOACTIVITY 45Fe(2p), (β+p) [from Be(58Ni, X), E=650 MeV/nucleon]; measured proton spectrum, (proton)γ-coin, T1/2, branching ratios, possible 2-proton separation energy. 43Cr(β+); analyzed radioactivity data; deduced ground state T1/2.

doi: 10.1140/epja/i2002-10033-9
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2001GR16      Nucl.Phys. A689, 567c (2001)

L.V.Grigorenko, R.C.Johnson, I.G.Mukha, I.J.Thompson, M.V.Zhukov

Two-Proton or Diproton Emission: 19Mg and 48Ni examples

NUCLEAR STRUCTURE 19Mg, 48Ni; calculated two-proton decay energies, widths.

doi: 10.1016/S0375-9474(01)00906-X
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2001GR29      Phys.Rev. C64, 054002 (2001)

L.V.Grigorenko, R.C.Johnson, I.G.Mukha, I.J.Thompson, M.V.Zhukov

Two-Proton Radioactivity and Three-Body Decay: General problems and theoretical approach

NUCLEAR STRUCTURE 6,8,10He, 6,8Li, 6,9Be, 9B, 12C, 12O, 16,17Ne; analyzed three-body decay features. 19Mg, 34Ca, 38,39Ti, 41,42Cr, 45Fe, 48Ni, 54Zn, 58,59Ge, 62,63Se, 66,67Kr; calculated two-proton decay energy, related features. 6Be, 19Mg, 48Ni; calculated proton energy distributions following two-proton decay. Three-body decay model.

doi: 10.1103/PhysRevC.64.054002
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2000GR03      Nucl.Phys. A665, 105 (2000)

L.V.Grigorenko, N.B.Shulgina, M.V.Zhukov

Three-Cluster States in the Spectrum of 8Be (1) Structure and β-Decay of 8B to 16.6 MeV State

NUCLEAR STRUCTURE 8Be; calculated three-cluster states energy, J, π. Hyperspherical harmonic method.

RADIOACTIVITY 8B(β+); calculated Gamow-Teller and Fermi matrix elements for transitions to three-cluster states.

doi: 10.1016/S0375-9474(99)00420-0
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2000GR07      Nucl.Phys. A671, 136 (2000)

L.V.Grigorenko, N.B.Shulgina, B.V.Danilin

Three-Cluster States in the Spectrum of 8Be. (II). Interaction of 2+ Doublet with α-α Continuum

NUCLEAR STRUCTURE 8Be; calculated level properties, role of α-α continuum. Coulomb mixing, resonant interference.

doi: 10.1016/S0375-9474(99)00831-3
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2000GR16      Phys.Rev.Lett. 85, 22 (2000)

L.V.Grigorenko, R.C.Johnson, I.G.Mukha, I.J.Thompson, M.V.Zhukov

Theory of Two-Proton Radioactivity with Application to 19Mg and 48Ni

RADIOACTIVITY 6Be, 17Ne, 19Mg, 48Ni(2p); calculated two-proton decay widths. Three-body model, other models compared.

doi: 10.1103/PhysRevLett.85.22
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2000SH23      Phys.Rev. C62, 014312 (2000)

N.B.Shulgina, B.V.Danilin, L.V.Grigorenko, M.V.Zhukov, J.M.Bang

Nuclear Structure of 5H in a Three-Body 3H + n + n Model

NUCLEAR STRUCTURE 5He; calculated levels energies, J, π, widths. Three-body model.

doi: 10.1103/PhysRevC.62.014312
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1999GR21      Phys.Rev. C60, 044312 (1999)

L.V.Grigorenko, B.V.Danilin, V.D.Efros, N.B.Shulgina, M.V.Zhukov

Extended Three-Cluster Model with Two-Cluster Long-Range Correlations: Application to the 8Li, 8B Nuclei

NUCLEAR STRUCTURE 8Li, 8B; calculated binding energies, radii, levels spectroscopic factors. Three-cluster model, comparison with data.

doi: 10.1103/PhysRevC.60.044312
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1998GR07      Phys.Rev. C57, R2099 (1998)

L.V.Grigorenko, B.V.Danilin, V.D.Efros, N.B.Shulgina, M.V.Zhukov

Structure of the 8Li and 8B Nuclei in an Extended Three-Body Model and Astrophysical S17 Factor

NUCLEAR STRUCTURE 8Li, 8B; calculated levels, radii, quadrupole moments, wavefunctions. Three-body model. Comparison with data.

NUCLEAR REACTIONS 7Be(p, γ), E not given; calculated astrophysical S-factor. Three-body model, asymptotic normalization coefficients.

doi: 10.1103/PhysRevC.57.R2099
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1998GR17      Yad.Fiz. 61, No 9, 1582 (1998); Phys.Atomic Nuclei 61, 1472 (1998)

L.V.Grigorenko, N.B.Shulgina

Parity-Violating 6Li(0+ 1) → α + d Decay and 6Li(0+ 1) → α + d + γ M1 Transtion

NUCLEAR STRUCTURE 6Li; calculated excited states parity-violating decay widths to α + d continuum; deduced short-range correlations role. Three-body wavefunction, optical model.


1997SH19      Nucl.Phys. A619, 143 (1997)

N.B.Shulgina, L.V.Grigorenko, M.V.Zhukov, J.M.Bang

8He β-Decay to the 6Li + n + n Channel

RADIOACTIVITY 8He(β-); calculated 6Li, 2n-spectra, Gamow-Teller strength following β-decay; deduced implications for 8Li Gamow-Teller sum rule. Cluster-orbital shell-model approximation.

doi: 10.1016/S0375-9474(97)00151-6
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1996GR16      Nucl.Phys. A607, 277 (1996); Erratum Nucl.Phys. A614, 567 (1997)

L.V.Grigorenko, N.B.Shulgina, M.V.Zhukov

Theoretical Studies of 8He β-Decay

RADIOACTIVITY 8He(β-); calculated neutron spectrum following β-decay, Gamow-Teller transition strength. 8Li deduced halo analog state energy. Three-body model, α+4N configurations, two-body continuum considered.

doi: 10.1016/S0375-9474(96)00237-0
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1995ZH31      Phys.Rev. C52, 2461 (1995)

M.V.Zhukov, B.V.Danilin, L.V.Grigorenko, J.S.Vaagen

β Decay of 11Li to the Deuteron Channel and Halo Analog States in 11Be

RADIOACTIVITY 11Li(β-); calculated β-decay probability vs E(d), total branching ratio for decay to deuteron channel. Microscopic hyperspherical harmonics method, halo analog states.

NUCLEAR STRUCTURE 11Be; calculated wave functions, separation energies, halo analog state. 11Li; calculated wave functions, separation energies. Microscopic hyperspherical harmonics method.

doi: 10.1103/PhysRevC.52.2461
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1993ZH09      Phys.Rev. C47, 2937 (1993)

M.V.Zhukov, B.V.Danilin, L.V.Grigorenko, B.B.Shulgina

6He Beta Decay to the α + d Channel in a Three-Body Model

RADIOACTIVITY 6He(β-); calculated β-delayed deuteron emission branching ratio, log ft; deduced neutron halo role. Three-body model.

doi: 10.1103/PhysRevC.47.2937
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