NSR Query Results
Output year order : Descending NSR database version of April 27, 2024. Search: Author = A.Parkhomenko Found 10 matches. 2012LI24 Int.J.Mod.Phys. E21, 1250038 (2012) Yu.A.Litvinov, A.Sobiczewski, A.Parkhomenko, E.A.Cherepanov Description of heavy-nuclei masses by macroscopic-microscopic models
doi: 10.1142/S0218301312500383
2009PA30 Int.J.Mod.Phys. E18, 1071 (2009) A.Parkhomenko, S.Hofmann, A.Sobiczewski Structure effects in the decay of superheavy nuclei RADIOACTIVITY 269Ds(α); calculated level properties of α decay chain using macroscopic-microscopic approach. Derived characteristic quantities.
doi: 10.1142/S0218301309013270
2006PA12 Int.J.Mod.Phys. E15, 457 (2006) Single-particle effects in decay chains of odd-A superheavy nuclei RADIOACTIVITY 271Ds, 267Hs, 263Sg, 259Rf(α); calculated Qα, T1/2, single-particle effects. Macroscopic-microscopic approach, comparison with data.
doi: 10.1142/S0218301306004363
2006SO08 Phys.Atomic Nuclei 69, 1155 (2006) Description of α-Decay Half-Lives of Heaviest Nuclei NUCLEAR STRUCTURE Z=84-111; A=128-161; analyzed α-decay T1/2, Qα; deduced parameters. Five-parameter phenomenological formula.
doi: 10.1134/S106377880607009X
2005PA28 Acta Phys.Pol. B36, 1363 (2005) Description of α-spectroscopic data of odd-A superheavy nuclei RADIOACTIVITY 271Ds, 267Hs, 263Sg, 259Rf(α); calculated Qα. Macroscopic-microscopic approach, comparisons with data. NUCLEAR STRUCTURE 245Cm; calculated neutron single-particle spectra.
2005PA29 Int.J.Mod.Phys. E14, 421 (2005) Sensitivity of one-quasiparticle spectra of heaviest nuclei to various factors NUCLEAR STRUCTURE 241Am; calculated single-proton energy levels vs deformation and pairing parameters.
doi: 10.1142/S0218301305003223
2005PA72 Acta Phys.Pol. B36, 3095 (2005) Phenomenological formula for α-decay half-lives of heaviest nuclei NUCLEAR STRUCTURE Z=84-116; analyzed α-decay T1/2; deduced parameters. Phenomenological formula.
2005PA73 Acta Phys.Pol. B36, 3115 (2005) Neutron one-quasiparticle states of heaviest nuclei NUCLEAR STRUCTURE 235Th, 237,239U, 239,241,243,245,247,249Pu, 241,243,245,247,249,251,253Cm, 243,245,247,249,251,253,255,257Cf, 245,247,249,251,253,255,257,259,261Fm, 247,249,251,253,255,257,259,261,263No, 251,253,255,257,259,261,263,265Rf, 253,255,257,259,261,263,265,267Sg, 261,263,265,267,269Hs, 267,269,271Ds; calculated neutron single-quasiparticle energies. Macroscopic-microscopic approach.
2004PA40 Acta Phys.Pol. B35, 2447 (2004) Proton one-quasiparticle states of heaviest nuclei NUCLEAR STRUCTURE 229,231,233,235,237,239,241,243Np; 235,237,239,241,243,245,247,249Am, 237,239,241,243,245,247,249,251Bk, 243,245,247,249,251,253,255Es, 243,245,247,249,251,253,255,257,259,261Md, 249,251,253,255,257,259,261Lr, 253,255,257,259,261,263Db, 259,261,263,265,267,269,271Bh, 263,265,267,269,271,273,275Mt, 271,273,275,277,279,281,283Rg, 277,279,281,283,285,287,289Nh, 283,285,287,289,291,293Mc, 287,289,291,293,295Ts; calculated deformation parameters, pairing gap, single-particle energy levels, configurations. Macroscopic-microscopic approach.
2002PA21 Zh.Eksp.Teor.Fiz. 121, 838 (2002); J.Exper.Theo.Phys. 94, 720 (2002) Noninversive Partial Velocity Amplification of Radiation by Ions Due to Their Rotation in a Magnetic Field
doi: 10.1134/1.1477896
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