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NSR database version of April 27, 2024.

Search: Author = E.V.Chernysheva

Found 4 matches.

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2022CH41      Bull.Rus.Acad.Sci.Phys. 86, 883 (2022)

E.V.Chernysheva, A.M.Rodin, V.Yu.Vedeneev, A.V.Gulyaev, A.V.Gulyaeva, M.Holik, S.N.Dmitriev, D.Kamas, J.Kliman, A.B.Komarov, L.Krupa, P.Kohout, A.Kohoutova, A.S.Novoselov, Yu.Ts.Oganessian, A.Opichal, J.Pechousek, A.V.Podshibyakin, V.S.Salamatin, S.V.Stepantsov S.A.Yukhimchuk

Cross Sections of the Production of Mercury and Radon Isotopes in Complete Fusion Reactions with 36, 40Ar and 40, 48Ca Projectiles

NUCLEAR REACTIONS 144Sm(40Ar, Xn)184Hg/181Hg/182Hg/181Hg/180Hg/179Hg/178Hg, E=154-232 MeV; 148Sm(36Ar, Xn)184Hg/183Hg/182Hg/181Hg/180Hg/179Hg, E=144-233 MeV; 144Nd(40Ca, Xn)184Hg/183Hg/182Hg/181Hg/180Hg/179Hg, E=145-216 MeV; 142Nd(48Ca, Xn)190Hg/185Hg/184Hg/183Hg, E=202-264 MeV; 166Er(40Ar, Xn)206Rn/203Rn/202Rn/201Rn, E=156-202 MeV; measured reaction products, Eα, Iα; deduced σ. Comparison with theoretical calculations. Flerov Laboratory's U400M cyclotron.

doi: 10.3103/S1062873822080044
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2022KA12      Phys.Rev. C 105, 044612 (2022)

D.Kamas, A.Opichal, E.V.Chernysheva, S.N.Dmitriev, A.V.Gulyaev, A.V.Gulyaeva, M.Holik, J.Kliman, A.B.Komarov, L.Krupa, A.S.Novoselov, Yu.Ts.Oganessian, A.V.Podshibyakin, A.M.Rodin, V.S.Salamatin, S.V.Stepantsov, V.Yu.Vedeneev, S.A.Yukhimchuk

Evaporation-residue cross sections in complete fusion reactions leading to Hg and Rn isotopes

NUCLEAR REACTIONS 144Sm(40Ar, 2n), (40Ar, 3n), (40Ar, 4n), (40Ar, 5n), (40Ar, 6n), E=299 MeV; 148Sm(36Ar, 2n), (36Ar, 3n), (36Ar, 4n), (36Ar, 5n), E=324 MeV; 144Nd(40Ca, 2n), (40Ca, 3n), (40Ca, 4n), (40Ca, 5n), E=268 MeV; 142Nd(48Ca, 5n), (48Ca, 6n), (48Ca, 7n), E=327 MeV; 166Er(40Ar, 3n), (40Ar, 4n), (40Ar, 5n), (40Ar, 2np), (40Ar, 3np), (40Ar, 4np), (40Ar, 5np), E=300 MeV; measured reaction products, Eα, Iα; deduced complete fusion and xn-evaporation σ(E). Comparison to coupled-channel calculations. Measurement of α from the decay of reaction products implanted on Al foils.with Si-detectors. Beam from U400M cyclotron of the FLNR, JINR (Dubna).

doi: 10.1103/PhysRevC.105.044612
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2014KO45      Phys.Rev. C 90, 054608 (2014); Pub.Note Phys.Rev. C 90, 069901 (2014)

E.M.Kozulin, G.N.Knyazheva, I.M.Itkis, M.G.Itkis, A.A.Bogachev, E.V.Chernysheva, L.Krupa, F.Hanappe, O.Dorvaux, L.Stuttge, W.H.Trzaska, C.Schmitt, G.Chubarian

Fusion-fission and quasifission of superheavy systems with Z = 110-116 formed in 48Ca-induced reactions

NUCLEAR REACTIONS 232Th(48Ca, X)280Ds*, E=244 MeV; 238U(48Ca, X)286Cn*, E=228-238 MeV; 244Pu(48Ca, X)292Fl*, E=226-244 MeV; 248Cm(48Ca, X)296Lv*, E=233-240 MeV; measured binary reaction products in coincidence mode, time-of-flight, capture σ(E) using the double-arm time-of-flight spectrometer CORSET at the U-400 cyclotron of the FLNR-JINR facility; deduced fragment mass and energy distributions, most probable fragment masses and total kinetic energies (TKEs) and their dispersions in dependence on the interaction energies and ion-target combinations, fusion probabilities PCN. 283,284,285,286Cn, 289,290,291,292Fl, 293,294,295,296Lv; estimated lower limits for fission barriers.Comparison with available experimental results and calculations.

doi: 10.1103/PhysRevC.90.054608
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetF1270.


2011IT06      Phys.Rev. C 83, 064613 (2011)

I.M.Itkis, E.M.Kozulin, M.G.Itkis, G.N.Knyazheva, A.A.Bogachev, E.V.Chernysheva, L.Krupa, Yu.Ts.Oganessian, V.I.Zagrebaev, A.Ya.Rusanov, F.Goennenwein, O.Dorvaux, L.Stuttge, F.Hanappe, E.Vardaci, E.de Goes Brennand

Fission and quasifission modes in heavy-ion-induced reactions leading to the formation of Hs*

NUCLEAR REACTIONS 249Cf(22Ne, X)271Hs*, E=102, 127 MeV; 248Cm(26Mg, X)274Hs*, E=129, 143, 160 MeV; 238U(36S, X)274Hs*, E=173, 179, 186, 198 MeV; 208Pb(58Fe, X)266Hs*, E=289, 305, 315, 324 MeV; measured binary reaction product spectra in coincidence mode using TOF; deduced yields, mass-energy and TKE distributions of binary products. Comparison of measured fragment mass-energy distributions with those expected for fission processes of excited compound nucleus in the framework of the liquid drop model and empirical systematics.

doi: 10.1103/PhysRevC.83.064613
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetA0885.


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Note: The following list of authors and aliases matches the search parameter E.V.Chernysheva: , E.V.CHERNYSHEVA