NSR Query Results
Output year order : Descending NSR database version of May 3, 2024. Search: Author = D.Y.Chuvilin Found 8 matches. 2019AR09 At.Energ. 126, 197 (2019) A.A.Artyukhov, A.A.Artyukhov, V.A.Zagryadskii, Ya.M.Kravets, T.M.Kuznetsova, S.T.Latushkin, L.I.Menshikov, A.V.Ryzhkov, T.A.Udalova, D.Yu.Chuvilin Recoil Atom Yield in 100Mo(p, x)99Mo During 28 MeV Proton Irradiation of Nanosize Molybdenum Layers NUCLEAR REACTIONS 100Mo(p, x)99Mo, E=28 MeV; measured reaction products; deduced yield of 99Mo recoil atoms for nanolayers.
doi: 10.1007/s10512-019-00536-y
2019ZA09 At.Energ. 126, 310 (2019) V.A.Zagryadskii, S.T.Latushkin, T.Yu.Malamut, V.I.Novikov, A.A.Ogloblin, V.N.Unezhev, D.Yu.Chuvilin Measurement of 82, 83, 84Kr(3He, xn)82Sr Cross Sections in Kurchatov Institute U-150 Cyclotron NUCLEAR REACTIONS Kr(3He, X)82Sr, E=20-75 MeV; measured reaction products, Eγ, Iγ; deduced σ.
doi: 10.1007/s10512-019-00555-9
2018AR05 At.Energ. 124, 261 (2018) A.A.Artyukhov, V.A.Zagryadskii, Ya.M.Kravets, T.M.Kuznetsova, L.I.Menshikov, A.V.Ryzhkov, T.A.Udalova, D.Yu.Chuvilin Measurement of 99Mo Yield in 100Mo (p, x) with 30 MeV Proton Irradiation of Multicomponent Submicron Particles NUCLEAR REACTIONS 100Mo(p, X)99Mo, E=30 MeV; measured reaction products by chemical separation; deduced yield. Comparison with available data.
doi: 10.1007/s10512-018-0408-3
2017ZA14 At.Energ. 123, 55 (2017) V.A.Zagryadskii, S.T.Latushkin, T.Yu.Malamut, V.I.Novikov, A.A.Ogloblin, V.N.Unezhev, D.Yu.Chuvilin Measurement of Terbium Isotopes Yield in Irradiation of 151Eu Targets by 3He Nuclei NUCLEAR REACTIONS 151Eu(3He, X)148Tb/149Tb/150Tb/151Tb/152Tb/153Tb, E=40-70 MeV; measured reaction products, Eγ, Iγ; deduced yields.
doi: 10.1007/s10512-017-0299-8
2013ME11 At.Energ. 114, 280 (2013) L.I.Menshikov, A.N.Semenov, D.Yu.Chuvilin Calculation of the escape of the recoil atoms in the reaction 98Mo(n, γ)99Mo from molybdenum (IV) disulfide nanoparticles NUCLEAR REACTIONS 98Mo(n, γ), E=3-7 MeV; calculated escape probability for recoil atoms.
doi: 10.1007/s10512-013-9710-2
2011ZA03 At.Energ. 110, 99 (2011) V.A.Zagryadskii, S.T.Latushkin, V.I.Novikov, A.A.Ogloblin, V.N.Unezhev, D.Yu.Chuvilin, A.V.Shatrov, D.I.Yartsev Experimental determination of 80, 82, 83Kr(α, χn)82Sr cross sections for reaction threshold to 60 MeV α-particles NUCLEAR REACTIONS 80Kr(α, 2n), 82Kr(α, 4n), 83Kr(α, 5n), E=60 MeV; measured Eγ, Iγ; deduced yields, σ.
doi: 10.1007/s10512-011-9397-1
1990KO52 At.Energ. 69, 329 (1990); Sov.At.Energy 69, 987 (1991) Systematic Errors Using a Multicomponent Activation Detector to Determine the Neutron Flux of 252Cf Fission NUCLEAR REACTIONS 63Cu, 115In(n, γ), 103Rh, 115In(n, n), 237Np, 239Pu(n, F), 58Ni, 64Zn, 54Fe, 47Ti, 27Al(n, p), 63Cu(n, 2n), E=fission; analyzed data; deduced average activation σ.
1984NO10 Nucl.Instrum.Methods 227, 141 (1984) V.M.Novikov, D.Yu.Chuvilin, V.A.Zagryadsky Verification of Neutron Spectrum Calculation Accuracy with the Help of the Spectral Indices in the Interval 1-14 MeV NUCLEAR REACTIONS 19F, 93Nb, 107Ag, 63,65Cu, 58Ni(n, 2n), 27Al, 58Ni, 56Fe(n, p), 115In(n, n'), E=threshold-14 MeV; measured spectral indices. Neutron spectrum calculation verification.
doi: 10.1016/0168-9002(84)90112-8
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