NSR Query Results
Output year order : Descending NSR database version of April 27, 2024. Search: Author = V.Eremin Found 6 matches. 2018KO20 Acta Phys.Pol. B49, 503 (2018) D.Kostyleva, O.Kiselev, A.Bezbakh, V.Chudoba, V.Eremin, A.Fomichev, A.Gorshkov, S.Krupko, I.Mukha, I.Muzalevskii, C.Scheidenberger, P.Sharov Study of the Silicon Detectors for Time-of-Flight Measurements at the Super-FRS Facility and Expert Experiments at FAIR
doi: 10.5506/aphyspolb.49.503
2017ZA09 Phys.Rev. C 96, 034617 (2017) J.C.Zamora, T.Aumann, S.Bagchi, S.Bonig, M.Csatlos, I.Dillmann, C.Dimopoulou, P.Egelhof, V.Eremin, T.Furuno, H.Geissel, R.Gernhauser, M.N.Harakeh, A.-L.Hartig, S.Ilieva, N.Kalantar-Nayestanaki, O.Kiselev, H.Kollmus, C.Kozhuharov, A.Krasznahorkay, Th.Kroll, M.Kuilman, S.Litvinov, Yu.A.Litvinov, M.Mahjour-Shafiei, M.Mutterer, D.Nagae, M.A.Najafi, C.Nociforo, F.Nolden, U.Popp, C.Rigollet, S.Roy, C.Scheidenberger, M.von Schmid, M.Steck, B.Streicher, L.Stuhl, M.Thurauf, T.Uesaka, H.Weick, J.S.Winfield, D.Winters, P.J.Woods, T.Yamaguchi, K.Yue, J.Zenihiro Nuclear-matter radius studies from 58Ni (α, α) experiments at the GSI Experimental Storage Ring with the EXL facility NUCLEAR REACTIONS 4He(58Ni, α), (58Ni, α'), E=100, 150 MeV/nucleon; measured scattered α-particles, differential σ(θ, E) using stored ion beams and a UHV compatible detection system with a double-sided silicon strip detector (DSSD) at the heavy-ion experimental storage ring (ESR) at GSI facility; deduced optical model potential parameters, probability density distribution, point-density distributions of 58Ni, nuclear-matter radius, and compared with Skyrme-Hartree-Fock calculation (SHF), half-density radius, diffuseness of a Fermi-shape, rms radius, total-matter distribution, point-matter distribution. Comparison with experimental data.
doi: 10.1103/PhysRevC.96.034617
2016ZA08 Phys.Lett. B 763, 16 (2016) J.C.Zamora, T.Aumann, S.Bagchi, S.Bonig, M.Csatlos, I.Dillmann, C.Dimopoulou, P.Egelhof, V.Eremin, T.Furuno, H.Geissel, R.Gernhauser, M.N.Harakeh, A.-L.Hartig, S.Ilieva, N.Kalantar-Nayestanaki, O.Kiselev, H.Kollmus, C.Kozhuharov, A.Krasznahorkay, Th.Kroll, M.Kuilman, S.Litvinov, Yu.A.Litvinov, M.Mahjour-Shafiei, M.Mutterer, D.Nagae, M.A.Najafi, C.Nociforo, F.Nolden, U.Popp, C.Rigollet, S.Roy, C.Scheidenberger, M.von Schmid, M.Steck, B.Streicher, L.Stuhl, M.Thurauf, T.Uesaka, H.Weick, J.S.Winfield, D.Winters, P.J.Woods, T.Yamaguchi, K.Yue, J.Zenihiro First measurement of isoscalar giant resonances in a stored-beam experiment NUCLEAR REACTIONS 4He(58Ni, α'), E=100 MeV/nucleon; measured reaction products, Eα, Iα. 58Ni; deduced σ(θ, E), monopole contribution of the energy-weighted sum rule (EWSR).
doi: 10.1016/j.physletb.2016.10.015
2014SK02 Radiochemistry 56, 575 (2014) G.A.Skorobogatov, S.I.Bondarevskii, V.V.Eremin Effect of extranuclear factors on the probability of the 121m2Te → 121m1Te radioactive decay RADIOACTIVITY 121Te(IT) [from 121Sb(d, 2n), E=13 MeV]; measured decay products, Eγ, Iγ; deduced γ-ray intensity ratios, decay constant variation.
doi: 10.1134/S1066362214060022
2006SK11 JETP Lett. 83, 46 (2006) On the paper "Nonexponential 125mTe radioactive decay" by S.K.Godovikov RADIOACTIVITY 125Te(IT); analyzed available data on T1/2; deduced that the nonexponential radioactive decay of the 125mTe isomer does not exist.
doi: 10.1134/s0021364006010115
1999BO59 Bull.Rus.Acad.Sci.Phys. 63, 1617 (1999) S.I.Bondarevsky, B.E.Dzevitsky, V.V.Eremin, G.A.Skorobogatov Novel Experiments on Induced Gamma-Emission at the Isomeric Transition 119m2Sn → 119m1Sn + hν(65.66 keV) RADIOACTIVITY 119Sn(IT); measured γ spectra as function of source temperature, relative emission yield. Induced gamma-emission.
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