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NSR database version of April 27, 2024.

Search: Author = S.Smirnov

Found 13 matches.

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2014TR03      Acta Phys.Pol. B45, 383 (2014)

A.Trzcinska, E.Piasecki, W.Czarnacki, P.Decowski, N.Keeley, M.Kisielinski, S.Kliczewski, P.Koczon, A.Kordyasz, M.Kowalczyk, S.Khlebnikov, E.Koshchiy, T.Krogulski, B.Lommel, T.Loktev, M.Mutterer, K.Piasecki, I.Strojek, W.H.Trzaska, S.Smirnov, A.Stolarz, G.Tiourin

Barrier Height Distributions - the Influence of Weak Channels

doi: 10.5506/APhysPolB.45.383
Citations: PlumX Metrics


2012KO34      Phys.Rev. C 86, 044611 (2012)

E.M.Kozulin, E.Vardaci, G.N.Knyazheva, A.A.Bogachev, S.N.Dmitriev, I.M.Itkis, M.G.Itkis, A.G.Knyazev, T.A.Loktev, K.V.Novikov, E.A.Razinkov, O.V.Rudakov, S.V.Smirnov, W.Trzaska, V.I.Zagrebaev

Mass distributions of the system 136Xe + 208Pb at laboratory energies around the Coulomb barrier: A candidate reaction for the production of neutron-rich nuclei at N=126

NUCLEAR REACTIONS 208Pb(136Xe, X), E=700, 870, 1020 MeV; measured particle spectra, (particle)(particle)-coin using CORSET spectrometer at Flerov lab, fragment mass-energy distribution, velocity and TKEL distributions, fragment mass yield, σ(E, θ). Comparison with theoretical calculations.

RADIOACTIVITY 212Bi, 210,212,214,216,218Po, 220,222Rn, 224Ra(α); measured α spectra.

doi: 10.1103/PhysRevC.86.044611
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetF1274.


2012PI08      Phys.Rev. C 85, 054604 (2012); Pub.Note Phys.Rev. C 85, 059903 (2012)

E.Piasecki, W.Czarnacki, N.Keeley, M.Kisielinski, S.Kliczewski, A.Kordyasz, M.Kowalczyk, S.Khlebnikov, E.Koshchiy, T.Krogulski, T.Loktev, M.Mutterer, A.Piorkowska, K.Rusek, M.Sillanpaa, A.Staudt, I.Strojek, S.Smirnov, W.H.Trzaska, A.Trzcinska

Weak channels in backscattering of 20Ne on natNi, 118Sn, and 208Pb

NUCLEAR REACTIONS Ni(20Ne, X), E=51.7 MeV; 118Sn(20Ne, X), E=72.1 MeV; 208Pb(20Ne, X), E=102.0 MeV; measured particle spectra, time of flight, energy loss, transfer σ; deduced mass distribution of reaction products, inelastic Q-spectra. 90Zr(20Ne, X), E=62.8 MeV; 92Zr(20Ne, X), E=62.6 MeV; analyzed data. Comparison with coupled-channels (CC) calculations.

doi: 10.1103/PhysRevC.85.054604
Citations: PlumX Metrics


2010KO16      Phys.Lett. B 686, 227 (2010)

E.M.Kozulin, G.N.Knyazheva, I.M.Itkis, M.G.Itkis, A.A.Bogachev, L.Krupa, T.A.Loktev, S.V.Smirnov, V.I.Zagrebaev, J.Aysto, W.H.Trzaska, V.A.Rubchenya, E.Vardaci, A.M.Stefanini, M.Cinausero, L.Corradi, E.Fioretto, P.Mason, G.F.Prete, R.Silvestri, S.Beghini, G.Montagnoli, F.Scarlassara, F.Hanappe, S.V.Khlebnikov, J.Kliman, A.Brondi, A.Di Nitto, R.Moro, N.Gelli, S.Szilner

Investigation of the reaction 64Ni + 238U being an option of synthesizing element 120

NUCLEAR REACTIONS 238U(48Ca, X), E=220-260 MeV; 238U(64Ni, X), E=320-385 MeV; measured fragment yields and energy distributions using CORSET time-of-flight spectrometer; deduced σ; analyzed reaction mechanism features using Viola systematics. 244Pu(58Fe, X), E=328 MeV; analyzed data. Discussed superheavy element formation.

doi: 10.1016/j.physletb.2010.02.041
Citations: PlumX Metrics


2009PI08      Acta Phys.Pol. B40, 849 (2009)

E.Piasecki, A.Trzcinska, W.Gawlikowicz, J.Jastrzebski, N.Keeley, M.Kisielinski, S.Kliczewski, A.Kordyasz, M.Kowalczyk, S.Khlebnikov, E.Koshchiy, E.Kozulin, T.Krogulski, T.Lotkiev, M.Mutterer, K.Piasecki, A.Piorkowska, K.Rusek, A.Staudt, I.Strojek, W.H.Trzaska, M.Sillanpaa, S.Smirnov, G.Tiourin, K.Hagino, N.Rowley

Are the Weak Channels Really Weak?


2009PI15      Phys.Rev. C 80, 054613 (2009)

E.Piasecki, L.Swiderski, W.Gawlikowicz, J.Jastrzebski, N.Keeley, M.Kisielinski, S.Kliczewski, A.Kordyasz, M.Kowalczyk, S.Khlebnikov, E.Koshchiy, E.Kozulin, T.Krogulski, T.Loktev, M.Mutterer, K.Piasecki, A.Piorkowska, K.Rusek, A.Staudt, M.Sillanpaa, S.Smirnov, I.Strojek, G.Tiourin, W.H.Trzaska, A.Trzcinska, K.Hagino, N.Rowley

Effects of weakly coupled channels on quasielastic barrier distributions

NUCLEAR REACTIONS 90,92Zr(20Ne, X), E=36-64 MeV; measured backscattered particle spectra, quasielastic σ; deduced barrier distributions, inelastic Q-value spectra and particle-transfer σ. Comparison with coupled-channel calculations.

doi: 10.1103/PhysRevC.80.054613
Citations: PlumX Metrics


1995BA27      Phys.Rev.Lett. 74, 3081 (1995)

Chr.Bargholtz, Kj.Fransson, O.Batenkov, M.Majorov, S.Smirnov, A.Veshikov

Gamma Ray Emission in the 252Cf Spontaneous Fission Process

RADIOACTIVITY 252Cf(SF); measured γ anisotropy; deduced sum-up correction importance.

doi: 10.1103/PhysRevLett.74.3081
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1990AM05      Yad.Fiz. 52, 1231 (1990); Sov.J.Nucl.Phys. 52, 782 (1990)

A.I.Amelin, M.G.Gornov, Yu.B.Gurov, A.L.Ilin, P.V.Morokhov, V.A.Pechkurov, V.I.Savelev, F.M.Sergeev, S.A.Smirnov, B.A.Chernyshev, R.R.Shafigullin, A.V.Shishkov

Production of 10Li in Absorption of Stopped π- Mesons by 11B Nuclei

NUCLEAR REACTIONS 11B(π-, X), E at rest; measured inclusive p-, d-, t-spectra, X=8-10Li production. 10Li deduced level, Γ.


1989CH30      Pisma Zh.Eksp.Teor.Fiz. 49, 378 (1989); JETP Lett.(USSR) 49, 431 (1989)

V.M.Cherepanov, M.A.Chuev, S.S.Yakimov, V.Ya.Goncharov, S.A.Smirnov, A.A.Bush

Anomalies in the Temperature Dependence of the Mossbauer-Effect Probability for Impurity Tin Nuclei in a 1-2-3 Superconducting Ceramic

NUCLEAR REACTIONS 119Sn(γ, γ), E=89.5 keV; measured Mossbauer spectra; deduced anomalies temperature dependence.


1988BA76      At.Energ. 64, 429 (1988); Sov.At.Energy 64, 489 (1988)

O.I.Batenkov, A.B.Blinov, M.V.Blinov, S.N.Smirnov

Neutron Emission from Spontaneous-Fission Fragments

RADIOACTIVITY 252Cf(SF); measured fragment neutron spectra.


1988GO08      Yad.Fiz. 47, 959 (1988)

M.G.Gornov, Yu.B.Gurov, A.L.Ilyin, S.G.Mashnik, P.V.Morokhov, V.A.Pechkurov, M.A.Polikarpov, V.I.Savelyev, F.M.Sergeev, S.A.Smirnov, A.A.Khomutov, B.A.Chernyshev, R.R.Shafigullin, A.V.Shishkov

Emission of Protons in Absorption of Stopped Negative Pions by Be, C, Si, Cu, and Ge Nuclei

NUCLEAR REACTIONS Be, C, Si, Cu, Ge(π-, pX), E at rest; measured inclusive proton spectra; deduced pion absorption mechanism.


1988GO14      Yad.Fiz. 47, 1193 (1988)

M.G.Gornov, Yu.B.Gurov, A.L.Ilyin, S.G.Mashnik, P.V.Morokhov, V.A.Pechkurov, M.A.Polikarpov, V.I.Savelyev, F.M.Sergeev, S.A.Smirnov, A.A.Khomutov, B.A.Chernyshev, R.R.Shafigullin, A.V.Shishkov

Emission of Composite Particles in Absorption of Stopped Negative Pions by Be, C, Si, Cu, and Ge Nuclei

NUCLEAR REACTIONS 9Be, Cu, Si, 209Bi, Ge(π-, d), (π-, t), (π-,3He), (π-, α), E at rest; measured particle energy spectra; deduced reaction mechanism.


1974SM01      Phys.Lett. 48B, 105 (1974)

S.A.Smirnov, S.V.Trubnikov

Threshold Electrodisintegration of the Deuteron Caused by Backward Scattering of Electrons

NUCLEAR REACTIONS 2H(e, n); calculated σ at threshold.

doi: 10.1016/0370-2693(74)90654-6
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Note: The following list of authors and aliases matches the search parameter S.Smirnov: , S.A.SMIRNOV, S.M.SMIRNOV, S.N.SMIRNOV, S.V.SMIRNOV