NSR Query Results
Output year order : Descending NSR database version of May 6, 2024. Search: Author = E.Konobeevski Found 43 matches. 2022KO20 Phys.Atomic Nuclei 85, 289 (2022) E.S.Konobeevski, A.A.Kasparov, M.V.Mordovskoy, S.V.Zuyev, S.I.Potashev, A.A.Afonin, V.V.Mitcuk Data on the Neutron-Neutron Scattering Length from the nd-Breakup Reaction at En = 8 MeV and En = 11 MeV NUCLEAR REACTIONS 2H(n, nX), E=8, 11 MeV; measured reaction products, En, In; deduced yields, scattering length. Comparison with available data. The RADEX neutron channel of Institute for Nuclear Research (INR, Russian Academy of Sciences).
doi: 10.1134/S1063778822030115
2021AF04 Bull.Rus.Acad.Sci.Phys. 85, 1072 (2021) A.A.Afonin, Yu.M.Burmistrov, S.V.Zuyev, E.S.Konobeevski, M.V.Mordovskoy Studying the Thermal Neutron Spectrum of a W-Be Photoneutron Source
doi: 10.3103/S1062873821100051
2021KA29 Bull.Rus.Acad.Sci.Phys. 85, 534 (2021) A.A.Kasparov, E.S.Konobeevski, S.V.Zuyev, A.A.Afonin, M.V.Mordovskoy, V.V.Mitcuk, V.P.Zavarzina, A.S.Kurlovich Inelastic α 6Li Scattering as a Tool for Probing the Structure of 6Li Excited States NUCLEAR REACTIONS 6Li(α, α'), E=30 MeV; analyzed available data; deduced a tool for probing the cluster structure of excited 6Li states.
doi: 10.3103/S1062873821050117
2021KO24 Bull.Rus.Acad.Sci.Phys. 85, 530 (2021) E.S.Konobeevski, A.A.Afonin, A.A.Kasparov, V.M.Lebedev, V.V.Mitcuk, M.V.Mordovskoy, A.V.Spassky, S.V.Zuyev Extracting the Energy of the Virtual pp-State Produced in the d + 1H → p + p + n reaction NUCLEAR REACTIONS 1H(d, 2p), E<10 MeV; calculated kinematics; deduced certain experimental conditions and parameter settings, when experimental data on this reaction can be sensitive to the production of a quasibound pp-state whose mass (or the Epp value) can be extracted from the shape of the proton energy spectrum.
doi: 10.3103/S1062873821050130
2020AF03 Bull.Rus.Acad.Sci.Phys. 84, 884 (2020) A.A.Afonin, S.V.Zuyev, E.S.Konobeevski, M.V.Mordovskoy, V.N.Ponomarev, G.V.Solodukhov Studying the Distribution of Thermal Neutrons from the W-Be output Channel of a Photoneutron Source NUCLEAR REACTIONS 9Be(γ, n), E<9 MeV; measured reaction products, En, In; deduced distributions of thermal neutron flux density.
doi: 10.3103/S1062873820080031
2020AF04 Bull.Rus.Acad.Sci.Phys. 84, 889 (2020) A.A.Afonin, S.V.Zuyev, A.A.Kasparov, E.S.Konobeevski, V.M.Lebedev, V.V.Mitsuk, M.V.Mordovskoy, A.V.Spasskii Experiment on 9Be(α, α'n)X Coincidence at an Energy of 30 MeV NUCLEAR REACTIONS 9Be(α, nα'), (α, αα'), E=30 MeV; 9Be(d, nd'), (d, αd), E=15 MeV; calculated σ(E). NUCLEAR REACTIONS 9Be(α, nα'), (α, αα'), E=30 MeV; measured reaction products, Eα, Iα, α-γ-, α-n-coin.; deduced σ(E).
doi: 10.3103/S1062873820080043
2020KO18 Bull.Rus.Acad.Sci.Phys. 84, 378 (2020) E.S.Konobeevski, A.A.Afonin, S.V.Zuyev, A.A.Kasparov, V.M.Lebedev, V.V.Mitcuk, M.V.Mordovskoy, A.V.Spassky Studying pp-Correlations in the d + 1H → p + p + n Reaction
doi: 10.3103/S1062873820040152
2020KO28 Phys.Atomic Nuclei 83, 523 (2020) E.S.Konobeevski, A.A.Afonin, S.V.Zuyev, A.A.Kasparov, V.V.Mitcuk, M.V.Mordovskoy, S.I.Potashev Data on Neutron-Neutron Scattering Length from the Reaction n + 2H → n + n + p at En = 60 MeV NUCLEAR REACTIONS 2H(n, nd), E<60 MeV; measured reaction products, En, In; deduced neutron–deuteron breakup reaction yield as a function of the relative energy, energy spectrum of primary neutrons, neutron-neutron scattering length, three-nucleon forces effect.
doi: 10.1134/S1063778820040146
2019AF01 Bull.Rus.Acad.Sci.Phys. 83, 442 (2019) A.A.Afonin, S.V.Zuyev, E.S.Konobeevski Studying the Thermal Neutron Spectrum of the W-Be Photoneutron Source at the Institute for Nuclear Research, Russian Academy of Sciences
doi: 10.3103/S1062873819040038
2019AF02 Bull.Rus.Acad.Sci.Phys. 83, 445 (2019) A.A.Afonin, S.V.Zuyev, E.S.Konobeevski Studying the Possibility of Using Different Aerosol Filters for Neutron-Activation Analysis
doi: 10.3103/S1062873819040312
2019AF05 Physics of Part.and Nuclei 50, 593 (2019) A.A.Afonin, S.V.Zuyev, E.S.Konobeevski Study of the Thermal Neutron Spectrum of the W-Be Photoneutron Source of the INR RAS
doi: 10.1134/s1063779619050022
2019KA23 Bull.Rus.Acad.Sci.Phys. 83, 430 (2019) A.A.Kasparov, A.A.Afonin, E.S.Konobeevski, V.V.Mitcuk, S.V.Zuyev Kinematic Modeling of the Quasi-Free Scattering of Deuterons and α-Particles on the Clusters of Light Nuclei
doi: 10.3103/S1062873819040130
2019KA47 Physics of Part.and Nuclei 50, 605 (2019) A.A.Kasparov, E.S.Konobeevski, S.V.Zuyev, M.V.Morodvskoy, A.A.Afonin, V.V.Mitcuk Simulation of the Inelastic Alpha-Particle Scattering Reaction for Investigating the Cluster Structure of Excited States of 9Be
doi: 10.1134/s1063779619050125
2019KO10 Bull.Rus.Acad.Sci.Phys. 83, 433 (2019) E.S.Konobeevski, A.A.Afonin, S.V.Zuyev, A.A.Kasparov, V.V.Mitcuk, M.V.Mordovskoy, V.M.Lebedev, A.V.Spassky Probing the Cluster Structure of a Light Nucleus with d 9Be Scattering
doi: 10.3103/S1062873819040154
2019MO21 Bull.Rus.Acad.Sci.Phys. 83, 438 (2019) M.V.Mordovskoy, S.V.Zuyev, E.S.Konobeevski, V.V.Mitcuk, V.N.Ponomarev, G.V.Solodukhov, I.V.Surkova Determining the Energy Spectrum of Fast Neutrons in the n + 1H → n+p Reaction on the W-Be Source at the Institute for Nuclear Research, Russian Academy of Sciences
doi: 10.3103/S106287381904018X
2019NE01 Phys.Scr. 94, 015303 (2019) V.Nedorezov, E.Konobeevski, A.Polonski, V.Ponomarev, A.Savel'ev, G.Solodukhov, I.Tsymbalov, A.Turinge, S.Zuyev, D.Gorlova Photoexcitation of spin isomers of In and Cd nuclei in the pigmy resonance region NUCLEAR REACTIONS Cd, In(γ, γ')111Cd/113In/115In, E<7.5 MeV; measured reaction products, Eγ, Iγ; deduced σ.
doi: 10.1088/1402-4896/aaed6b
2019ZU01 Physics of Part.and Nuclei 50, 616 (2019) S.V.Zuyev, E.S.Konobeevski, M.V.Mordovskoy, V.G.Nedorezov, V.N.Ponomarev, G.V.Solodukhov Measurement of the Delayed Photon Yield of the Photofission Reaction as a Method for Identifying Fissile Materials
doi: 10.1134/s1063779619050265
2019ZU02 Physics of Part.and Nuclei 50, 623 (2019) S.V.Zuyev, E.S.Konobeevski, M.V.Mordovskoy, V.G.Nedorezov, V.N.Ponomarev, G.V.Solodukhov Photoexcitation of Cd and In Nuclei by Real and Virtual Photons in the 4-9 MeV Energy Region
doi: 10.1134/s1063779619050289
2018AF05 Bull.Rus.Acad.Sci.Phys. 82, 731 (2018) A.A.Afonin, S.V.Zuyev, E.S.Konobeevski The Possibility of Reconstructing the Low-Energy Part of the Neutron Spectrum of a Photoneutron Source via Neutron Activation Analysis NUCLEAR REACTIONS 50Ti, 75As(n, γ), E=0.01 eV-1 MeV; calculated, simulated neutron energy spectrum of the W-Be photoneutron source; deduced neutron flux density.
doi: 10.3103/S1062873818060035
2018AN08 Bull.Rus.Acad.Sci.Phys. 82, 736 (2018) A.V.Andreev, A.A.Afonin, Yu.M.Burmistrov, S.V.Zuyev, E.S.Konobeevski, M.V.Mordovskoy, E.V.Pletnikov Composition of Radioactive and Nonradioactive Elements in Samples of Atmospheric Aerosols and Near-Earth Surface Precipitation
doi: 10.3103/S1062873818060047
2018KO31 Phys.Atomic Nuclei 81, 595 (2018); Yad.Fiz. 81, 555 (2018) E.S.Konobeevski, S.V.Zuyev, A.A.Kasparov, V.I.Kukulin, V.M.Lebedev, M.V.Mordovskoy, V.N.Pomerantsev, A.V.Spassky Low-Energy Parameters of Neutron-Neutron Interaction: Analysis of Data Obtained in nd and dd Breakup Reactions
doi: 10.1134/S1063778818050083
2018KO32 Phys.Atomic Nuclei 81, 604 (2018); Yad.Fiz. 81, 564 (2018) E.S.Konobeevski, V.P.Zavarzina, S.V.Zuyev, A.A.Kasparov, A.S.Kurlovich, V.V.Mitsuk Possibility of Studying Neutron-Neutron Correlations in Halo Nuclei
doi: 10.1134/S1063778818050095
2018MO18 Bull.Rus.Acad.Sci.Phys. 82, 745 (2018) M.V.Mordovskoy, S.V.Zuyev, E.S.Konobeevski, V.V.Mitcuk, I.V.Surkova, V.M.Skorkin The Possibility of Obtaining a Quasi-Monoenergetic Beam of Neutrons on a Photoneutron Source
doi: 10.3103/S1062873818060205
2018ZU02 Phys.Atomic Nuclei 81, 442 (2018) S.V.Zuyev, V.G.Nedorezov, E.S.Konobeevski, A.A.Turinge Development of a Method for Measurement of Photonuclear-Reaction Cross Sections with the Aid of Simulated Quasimonoenergetic-Photon Spectra
doi: 10.1134/S1063778818040208
2017KO13 Few-Body Systems 58, 107 (2017) E.Konobeevski, A.Kasparov, M.Mordovskoy, S.Zuyev, V.Lebedev, A.Spassky Determination of Energy of nn-Singlet Virtual State in d + 2H → p+p+n+n Reaction NUCLEAR REACTIONS 2H(d, 2p), E=15 MeV; measured reaction products, Ep, Ip, En, In; deduced kinematically complete experiment the energy of virtual state of nn-system Enn.
doi: 10.1007/s00601-017-1272-8
2017NE13 Phys.Atomic Nuclei 80, 827 (2017) V.G.Nedorezov, E.S.Konobeevski, S.V.Zuyev, A.L.Polonski, A.A.Turinge Excitation of 111mCd, 113mIn, and 115mIn isomeric states by photons of energy up to 8 MeV
doi: 10.1134/S1063778817050167
2017ZU01 Bull.Rus.Acad.Sci.Phys. 81, 679 (2017) S.V.Zuyev, A.A.Kasparov, E.S.Konobeevski Mathematical simulation of few-nucleon experiments with three or more particles in the final state
doi: 10.3103/S1062873817060260
2016ZU04 Bull.Rus.Acad.Sci.Phys. 80, 227 (2016) S.V.Zuyev, A.A.Kasparov, E.S.Konobeevski, M.V.Mordovskoy, I.M.Zheleznykha, A.G.Gasanov, V.M.Lebedev, A.V.Spassky Experimental setup for studying N-N correlations in reaction d + 2H → n + n + p + p
doi: 10.3103/S1062873816030357
2015KO16 Phys.Atomic Nuclei 78, 643 (2015); Yad.Fiz. 78, 687 (2015) E.S.Konobeevski, S.V.Zuyev, A.A.Kasparov, V.M.Lebedev, M.V.Mordovskoy, A.V.Spassky Investigation of the reaction d + d → 2He + 2 n at the deuteron energy of 15 MeV NUCLEAR REACTIONS 2H(d, 2n)2He, E=15 MeV; measured reaction products, En, In, Ep, Ip; deduced two protons and one of the neutrons from the breakup of the dineutron system yields.
doi: 10.1134/S1063778815050129
2015ZU03 Phys.Atomic Nuclei 78, 694 (2015); Yad.Fiz. 78, 739 (2015) S.V.Zuyev, A.A.Kasparov, E.S.Konobeevski Possibilities of studying the structure of halo nuclei in reactions of quasifree proton scattering at low energies NUCLEAR REACTIONS 1H(8He, 4He), E=40 MeV; calculated σ(θ), cluster structures.
doi: 10.1134/S1063778815050191
2014KO39 Few-Body Systems 55, 1059 (2014) E.Konobeevski, S.Zuyev, A.Kasparov, V.Ostashko Simulation of the d + 3H → 3He + 2n; 2n → n + n Reaction NUCLEAR REACTIONS 3H(d, 2n), E=20 MeV; calculated neutron energy distributions. Comparison with available data.
doi: 10.1007/s00601-014-0855-x
2013BU13 Bull.Rus.Acad.Sci.Phys. 77, 839 (2013); Izv.Akad.Nauk RAS, Ser.Fiz 77, 924 (2013) Yu.M.Burmistrov, S.V.Zuyev, E.S.Konobeevski, M.V.Mordovskoy, S.I.Potashev, I.M.Sharapov Setup for studying quasi-free neutron-neutron scattering in the energy range of 20-60 MeV
doi: 10.3103/S1062873813070071
2013KO35 Phys.Atomic Nuclei 76, 1398 (2013); Yad.Fiz. 76, 1479 (2013) E.S.Konobeevski, S.V.Zuyev, M.V.Mordovskoy, S.I.Potashev, I.M.Sharapov Neutron-deuteron breakup reaction as a tool for studying neutron-neutron interactions NUCLEAR REACTIONS 2H(d, 2n), E=10-60 MeV; analyzed available data; calculated σ(θ, E). Comparison with experimental data.
doi: 10.1134/S1063778813110100
2013ZU02 Bull.Rus.Acad.Sci.Phys. 77, 834 (2013); Izv.Akad.Nauk RAS, Ser.Fiz 77, 919 (2013) S.V.Zuyev, E.S.Konobeevski, M.V.Mordovskoy, S.I.Potashev, I.M.Sharapov A neutron beam spectrometer based on a scintillation detector with n-γ pulse shape discrimination
doi: 10.3103/S1062873813070307
2011KO57 Iader.Fiz.Enerh. 12, 35 (2011); Nuc.phys.atom.energ. 12, 35 (2011) E.S.Konobeevski, M.V.Mordovskoy, I.M.Sharapov, S.I.Potashev, S.V.Zuyev Extraction of neutron-neutron scattering length from nn coincidence-geometry nd breakup data NUCLEAR REACTIONS 2H(n, p), E=40-60 MeV; measured reaction products; deduced yields, neutron-neutron scattering length.
2010KO25 Phys.Atomic Nuclei 73, 1302 (2010); Yad.Fiz. 73, 1343 (2010) E.S.Konobeevski, Yu.M.Burmistrov, S.V.Zuyev, M.V.Mordovskoy, S.I.Potashev Determination of the 1S0 neutron-neutron scattering length in the nd breakup reaction at energies in the range En = 40-60 MeV NUCLEAR REACTIONS 2H(n, p), E=40-60 MeV; measured neutron TOF, En, In, proton spectra; deduced yields, neutron-neutron scattering length.
doi: 10.1134/S106377881008003X
2009BE36 Phys.Atomic Nuclei 72, 1714 (2009); Yad.Fiz. 72, 1772 (2009) G.E.Belovitsky, V.P.Zavarzina, S.V.Zuyev, E.S.Konobeevski, A.V.Stepanov, N.G.Polukhina, A.S.Rusetsky, N.I.Starkov, S.M.Lukiyanov, Yul.G.Sobolev Quasifree proton scattering on halo nuclei as a tool for studying the neutron-halo structure NUCLEAR REACTIONS 1H(6He, X), E=60 MeV; measured scattered protons; deduced Dalitz plots, missing mass spectra.
doi: 10.1134/S1063778809100123
2008BE10 Bull.Rus.Acad.Sci.Phys. 72, 311 (2008); Izv.Akad.Nauk RAS, Ser.Fiz. 72, 336 (2008) G.E.Belovitsky, V.P.Zavarzina, E.S.Konobeevski, S.V.Zuyev, N.G.Polukhina, A.S.Rusetsky, N.I.Starkov, S.M.Lukyanov, Yu.G.Sobolev Measurements of the two-neutron transfer reaction induced by a 6He radioactive beam
doi: 10.3103/S106287380803009X
2008BE39 Int.J.Mod.Phys. E17, 2331 (2008) G.Belovitsky, E.Konobeevski, A.Stepanov, V.Zavarzina, S.Zuyev, S.Lukyanov, Yu.Sobolev Study of quasi-free scattering of protons by clusters of 6He halo nucleus
doi: 10.1142/S0218301308011562
2008KO31 Few-Body Systems 44, 277 (2008) E.Konobeevski, G.Belovitsky, A.Stepanov, V.Zavarzina, S.Zuyev, N.Polukhina, A.Rusetsky, N.Starkov, S.Lukyanov, Yu.Sobolev Study of the neutron halo structure in interaction of 6He with nuclei of photoemulsion
doi: 10.1007/s00601-008-0308-5
2008ZA05 Bull.Rus.Acad.Sci.Phys. 72, 797 (2008) V.P.Zavarzina, E.S.Konobeevski, A.V.Stepanov The role of configurations of neutron halo in the formation of the model vertex function for description of the two-neutron transfer reaction NUCLEAR REACTIONS 12C(t, p), (t, d), (11Li, 9Li), (11Li, n9Li), (6He, α), (6He, nα), E not given; calculated energy and angular distributions, nuclear vertex functions for virtual decay of halo nuclei.
doi: 10.3103/S1062873808060191
2008ZU02 Bull.Rus.Acad.Sci.Phys. 72, 782 (2008) S.V.Zuyev, E.S.Konobeevski, M.V.Mordovskoy, S.I.Potashev Preliminary data on the neutron-neutron correlations in the nd-breakup reaction NUCLEAR REACTIONS 2H(n, np), E=20-140 MeV; measured Ep, Ip, neutron Time-of-Flight, angular distributions, correlated neutron pairs.
doi: 10.3103/S1062873808060154
2007BE65 Eur.Phys.J. Special Topics 150, 5 (2007) G.Belovitsky, E.Konobeevski, A.Stepanov, V.Zavarzina, S.Zuyev, N.Polukhina, N.Starkov, S.Lukyanov, Yu.Sobolev Study of the structure of neutron halo using neutron transfer reaction
doi: 10.1140/epjst/e2007-00251-3
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