NSR Query Results
Output year order : Descending NSR database version of April 26, 2024. Search: Author = N.A.Maltsev Found 14 matches. 2022TO07 Bull.Rus.Acad.Sci.Phys. 86, 966 (2022) S.Y.Torilov, N.A.Maltsev, V.I.Zherebchevsky Analyzing Resonance States in Describing the Astrophysical S-Factor for Heavy Ion Fusion Reaction 16O + 12C NUCLEAR REACTIONS 16O(12C, X), E < 12 MeV; calculated fusion σ and astrophysical S-factor are obtained using optical potentials in a potential model. Comparison with available data.
doi: 10.3103/S106287382208024X
2021TO08 Bull.Rus.Acad.Sci.Phys. 85, 548 (2021) S.Yu.Torilov, N.A.Maltsev, V.I.Zherebchevsky Studying Low-Energy Resonances in the 12C + 16O System NUCLEAR REACTIONS 16O(12C, X), E(cm)<20 MeV; analyzed available data; deduced fusion σ, resonance states, interaction potential.
doi: 10.3103/S1062873821050233
2021ZH64 Bull.Rus.Acad.Sci.Phys. 85, 1128 (2021) V.I.Zherebchevsky, I.E.Alekseev, T.V.Lazareva, N.A.Maltsev, D.K.Nauruzbayev, D.G.Nesterov, N.A.Prokofiev, A.R.Rahmatullina, S.Yu.Torilov New Radionuclides for Personalized Medicine NUCLEAR REACTIONS 117,119Sn(p, n), E=6-18 MeV; measured reaction products; deduced σ. Comparison with theoretical calculations, available data.
doi: 10.3103/S1062873821100282
2019TO11 Bull.Rus.Acad.Sci.Phys. 83, 1151 (2019) S.Yu.Torilov, N.A.Maltsev, R.B.Panin, V.I.Zherebchevsky Investigating the Excitation Functions of the (p, n) Reaction for 40 < A < 239 Nuclei
doi: 10.3103/S1062873819090296
2016TO19 Bull.Rus.Acad.Sci.Phys. 80, 871 (2016) S.Yu.Torilov, N.A.Maltsev, V.Z.Goldberg, K.A.Gridnev, V.I.Zherebchevsky, T.Lonnroth, M.Mutterer, B.G.Novatsky, R.B.Panin, J.M.K.Slotte, Yu.G.Sobolev, W.H.Trzaska, G.P.Tyurin, S.V.Khlebnikov Decay of quasimolecular states in 26Mg NUCLEAR REACTIONS 14C(12C, 12C), (12C, 10Be), E*=41-44 MeV; calculated σ, σ(θ) using DWBA with phenomenological optical potentials; deduced parameters, resonance-like structure (already observed in the experiment) near E(cm)≈23.5 MeV, resonant-like structure in 16O+10Be channel at E(cm)≈19.7 MeV, dependence of E* vs angular momentum, prediction of 10+ state.
doi: 10.3103/S1062873816080384
2016ZH62 Bull.Rus.Acad.Sci.Phys. 80, 888 (2016) V.I.Zherebchevsky, I.E.Alekseev, K.A.Gridnev, E.B.Krymov, T.V.Lazareva, N.A.Maltsev, R.B.Panin, N.A.Prokofyev, S.Yu.Torilov, A.I.Shtamburg The study of the nuclear reactions for the production of antimony isotopes NUCLEAR REACTIONS Ti(p, x), E=12.5 MeV;48V, 56Fe(p, n), E=12.5 MeV;Sn(p, x)122Sb, E=12.5 MeV;Sn(p, x)124Sb, E=12.5 MeV; measured reaction products; deduced σ. Compared with other data. Ti(p, x)48V, E=5-65 MeV;56Fe(p, n), E=5-45 MeV;Sn(p, x)122Sb, E=5-65 MeV;Sn(p, x)124Sb, E=5-40 MeV;117Sn(p, n);119Sn(p, n), E=0-30 MeV; calculated σ using TALYS and (in some cases also) PRECO-2006.
doi: 10.3103/S1062873816080451
2015AA02 Bull.Rus.Acad.Sci.Phys. 79, 848 (2015); Izv.Akad.Nauk RAS, Ser.Fiz 79, 941 (2015) J.Aaltonen, E.A.Gromova, V.A.Jakovlev, K.Helariutta, N.A.Maltsev, H.Penttila, V.A.Rubchenya, W.H.Trzaska, S.Salminen-Paatero Formation of heavy neutron-deficient nuclides in 3He-induced reactions NUCLEAR REACTIONS 235U(3He, X)234Pu/236Pu/237Pu/234Np/235Np/236Np, E=20.4-42.0 MeV; measured reaction products, Eα, Iα, Eγ, Iγ; deduced σ. Comparison with FIPRODY and FRESCO calculations.
doi: 10.3103/S1062873815070047
2015TO13 JETP Lett. 102, 69 (2015) S.Yu.Torilov, N.A.Maltsev, V.Z.Goldberg, K.A.Gridnev, V.I.Zherebchevsky, T.Lonnroth, B.G.Novatskii, J.M.K.Slotte, Yu.G.Sobolev, W.H.Trzaska, G.P.Tyurin, S.V.Khlebnikov Quasimolecular states in a reaction with carbon isotopes NUCLEAR REACTIONS 14C(12C, 10Be), E(cm)=22.1, 23.5, 24.6 MeV; measured reaction products; deduced σ(θ), quasimolecular resonance. Comparison with cluster and DWBA models.
doi: 10.1134/S0021364015140118
2013GR13 Bull.Rus.Acad.Sci.Phys. 77, 852 (2013); Izv.Akad.Nauk RAS, Ser.Fiz 77, 938 (2013) K.A.Gridnev, N.A.Maltsev, N.V.Leshakova Effect of elastic and inelastic cluster transfer on elastic 16O + 12C and 16O + 16O scattering NUCLEAR REACTIONS 12C(16O, 16O), E=132, 181 MeV; 16O(16O, 16O), E=250 MeV; analyzed available data; calculated σ(θ); deduced importance of channel coupling, binding energy.
doi: 10.3103/S1062873813070113
2012GR16 Bull.Rus.Acad.Sci.Phys. 76, 934 (2012); Izv.Akad.Nauk RAS, Ser.Fiz 76, 1038 (2012) K.A.Gridnev, N.A.Maltsev, N.Burtebaev, N.Amangeldy, Sh.Hamada Role of the inelastic transfer channel in elastic 16O + 12C scattering over a wide range of energies NUCLEAR REACTIONS 12C(16O, 16O), E<200 MeV; calculated σ(θ), α-cluster transfer. DWBA and CCBA calculations.
doi: 10.3103/S106287381208014X
2012HA45 J.Phys.:Conf.Ser. 381, 012130 (2012) S.Hamada, N.Burtebayev, N.Amangeldi, K.A.Gridnev, K.Rusek, Zh.Kerimkulov, N.Maltsev Phenomenological and semi-microscopic analysis for 16O and 12C elastically scattering on the nucleus of 16O and 12C at Energies near the Coulomb barrier NUCLEAR REACTIONS 12C(12C, 12C), E=18, 21 MeV;16O(16O, 16O), E=24, 28 MeV; measured E(particle), I(particle, θ); deduced σ(θ); calculated σ(θ) using phenomenological optical potential using SPI-GENDA code and using double-folding potential code FRESCO; deduced potential parameters.
doi: 10.1088/1742-6596/381/1/012130
2011GR11 Bull.Rus.Acad.Sci.Phys. 75, 961 (2011) K.A.Gridnev, N.Burtebayev, N.A.Maltsev, N.Amangeldi, Sh.Hamada Investigating the 16O + 12C reaction over a wide range of energies NUCLEAR REACTIONS 12C(16O, 16O), (16O, 12C), E=28 MeV; measured reaction products; deduced σ(θ). α-cluster transfer, DWBA model, DWUCK5 program.
doi: 10.3103/S1062873811070173
2011TO07 JETP Lett. 94, 6 (2011) S.Yu.Torilov, K.A.Gridnev, V.I.Zherebchevsky, M.Brenner, L.I.Vinogradov, V.Z.Goldberg, T.V.Korovitskaya, T.Lonnroth, N.A.Maltsev, M.Mutterer, B.G.Novatskii, M.Norrby, J.M.K.Slotte, Yu.G.Sobolev, W.H.Trzaska, G.P.Tyurin, S.V.Khlebnikov Cluster states in the neutron excess nucleus 22Ne RADIOACTIVITY 22Ne(α) [from 14C(12C, α), E=44 MeV]; measured decay products, Eα, Iα. 22Ne; deduced excited states in 22Ne, energies, J, π, angular correlations for α-decay, α-clusters. Comparison with shell model.
doi: 10.1134/S0021364011130170
2009MA10 Bull.Rus.Acad.Sci.Phys. 73, 215 (2009); Izv.Akad.Nauk RAS, Ser.Fiz. 73, 226 (2009) Neutron transfers at low-energy collisions of nonspherical nuclei
doi: 10.3103/S106287380902018X
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