NSR Query Results
Output year order : Descending NSR database version of April 25, 2024. Search: Author = V.P.Verbitsky Found 24 matches. 2012PA28 Bull.Rus.Acad.Sci.Phys. 76, 888 (2012); Izv.Akad.Nauk RAS, Ser.Fiz 76, 990 (2012) Yu.N.Pavlenko, K.O.Terenetskii, V.P.Verbitskii, A.I.Rundel, Yu.Ya.Karlyshev, O.K.Gorpinich, L.I.Slusarenko, A.V.Stepanyuk, I.P.Dryapachenko, E.N.Mozhzhukhin Sub-barrier interaction between deuterons and 58, 62Ni nuclei NUCLEAR REACTIONS 58,62Ni(d, d), (d, p), E=3.5, 4.5, 5.16 MeV; measured reaction products; deduced σ(θ), σ(θ, E). Comparison with theoretical calculations.
doi: 10.3103/S1062873812080205
2010PA39 Iader.Fiz.Enerh. 11, 400 (2010); Nuc.phys.atom.energ. 11, 400 (2010) Yu.N.Pavlenko, K.O.Terenetsky, V.P.Verbitsky, O.I.Rundel, I.P.Dryapachenko, E.M.Mozhzhukhin, V.M.Dobrikov, Yu.Ya.Karlyshev, O.K.Gorpinich, T.O.Korzyna, O.D.Grygorenko Deuterons interaction with nuclei 208Pb at sub-barrier energies NUCLEAR REACTIONS 208Pb(d, p), E=7.3 MeV; measured reaction products, Ep, Ip; deduced σ(E, θ).
2009BO11 Phys.Rev. C 79, 044605 (2009) L.Borowska, K.Terenetsky, V.Verbitsky, S.Fritzsche Analytical potential for the elastic scattering of light halo nuclei below and close to the Coulomb barrier NUCLEAR REACTIONS 208Pb(d, d), E=8 MeV; 208Pb(6He, 6He), E=17.8 MeV; calculated dynamic polarization potentials, σ(θ). Adiabatic motion of light halo nuclei in Coulomb field of heavy targets. Application to systems with dineutron configurations.
doi: 10.1103/PhysRevC.79.044605
2007BO34 Phys.Rev. C 76, 034606 (2007) L.Borowska, K.Terenetsky, V.Verbitsky, S.Fritzsche Dynamic polarization of light halo nuclei in strong fields: 6He+209Bi elastic scattering below and close to the Coulomb barrier NUCLEAR REACTIONS 208Pb(6He, 6He), E=14.7, 19.1 MeV; calculated elastic σ and angular distributions. Compared results to available data.
doi: 10.1103/PhysRevC.76.034606
2007TE13 Iader.Fiz.Enerh. 8 no.3, 47 (2007) K.O.Terenetsky, O.V.Babak, V.P.Verbitsky, O.D.Grygorenko The optical potential for light weakly bound deuteron-like particles subbarrier elastic scattering NUCLEAR REACTIONS 208Pb(d, d), (6He, 6He), E not given; calculated electrical optical potential parameters. Adiabatic approximation.
doi: 10.15407/jnpae
2006TE03 Phys.Atomic Nuclei 69, 941 (2006); Yad.Fiz. 69, 970 (2006) Angular and Energy Dependences of Cross Sections for Deuteron Electrodisintegration at Subbarrier Energies NUCLEAR REACTIONS 208Pb(d, np), E=8 MeV; calculated σ(E, θ) for Coulomb breakup.
doi: 10.1134/S1063778806060044
2006TE11 Iader.Fiz.Enerh. 7 no.1, 45 (2006) Energy spectra of deuteron Coulomb breakup at subbarrier energies NUCLEAR REACTIONS 208Pb(d, np), E=8 MeV; calculated σ(E, θ) for Coulomb breakup, energy spectra of the ejectiles.
doi: 10.15407/jnpae
2005BO55 Bull.Rus.Acad.Sci.Phys. 69, 827 (2005) L.A.Borovskaya, V.P.Verbitsky, K.O.Terenetsky Polarizability of deuteron in electric field of nuclei
2004TE10 Iader.Fiz.Enerh. 5 no.1, 23 (2004) K.O.Terenetsky, L.Ya.Borovska, V.P.Verbitsky Dipole polarizability of weakly-bound nuclei in the external electric field
doi: 10.15407/jnpae
2004VE13 Bull.Rus.Acad.Sci.Phys. 68, 234 (2004) V.P.Verbitsky, L.A.Zhukalyuk, V.A.Romanishin, K.O.Terenetsky Interaction of 6He nuclei with 209Bi nuclei at near-barrier energies NUCLEAR REACTIONS 209Bi(6He, 6He), E=14.7, 16.2, 17.8, 19.1, 22 MeV; analyzed σ(θ); deduced polarization and breakup contributions. Optical model.
2002VE12 Ukr.J.Phys. 47, 10 (2002) V.P.Verbitsky, L.Ya.Zhukalyuk, K.O.Terenetsky Weakly bound particle in the electric field of a nucleus NUCLEAR STRUCTURE 2H, 6He, 11Li; calculated matter density distributions in electric field of 208Pb nucleus.
2002VE13 Iader.Fiz.Enerh. 3 no.1, 59 (2002) V.P.Verbitsky, V.O.Romanyshyn, K.O.Terenetsky Elastic scattering of 6He ions by 58Ni and 209Bi nuclei near the coulomb barrier NUCLEAR REACTIONS 58Ni(6He, 6He), E=10 MeV;209Bi(6He, 6He), E=14.7, 16.2, 17.8, 19.1, 22 MeV; analyzed σ(θ); calculated electrical optical potential parameters, σ(elastic)/σ(Rutherford). Optical model.
doi: 10.15407/jnpae
2001VE07 Iader.Fiz.Enerh. 2 no.3, 24 (2001) V.P.Verbitsky, L.Ya.Zhukalyuk, K.O.Terenetsky Quasistationary state of the weakly-bound particle in the external electric field NUCLEAR STRUCTURE 2H, 6He; calculated matter density distributions in external electric field of 208Pb, wave functions for deuteron in external fields.
doi: 10.15407/jnpae
2000VE11 Iader.Fiz.Enerh. 1, no.2, p.20 (2000) V.P.Verbitsky, L.Ya.Zhukalyuk, K.O.Terenetsky The criterion of adiabatic approximation for the weakly-bound particles Coulomb elastic scattering problem
doi: 10.15407/jnpae
1996VE05 Bull.Rus.Acad.Sci.Phys. 60, 41 (1996) V.P.Verbitsky, Yu.A.Pozdnyakov, K.O.Terenetsky Variational Calculation of the Ground State Energy of 6He Nucleus in Three-Cluster Approximation of the Resonating Groups Method NUCLEAR STRUCTURE 6He; calculated ground state energy, two-neutron separation energy. Algebraic version of the resonating group method, three-cluster approximation.
1995FI07 Yad.Fiz. 58, No 7, 1204 (1995); Phys.Atomic Nuclei 58, 1126 (1995) G.F.Filippov, V.P.Verbitsky, Yu.A.Pozdnyakov Three-Cluster Approximation in the Algebraic Version of the Resonating-Group Method: The ground state of the 9Li nucleus NUCLEAR STRUCTURE 9Li; calculated potential energy vs intercluster distance, two neutron separation energy. Three-cluster approximation, resonating group method, algebraic version.
1994FI14 Bull.Rus.Acad.Sci.Phys. 58, 1799 (1994) G.F.Filippov, V.P.Verbitsky, Yu.A.Pozdnyakov, K.O.Terenetsky Three-Cluster Model of 9Li Nucleus NUCLEAR STRUCTURE 9Li; calculated ground state geometrical, energy characteristics. Three-cluster approximation.
1992SK03 Z.Phys. A341, 315 (1992) N.K.Skobelev, S.M.Lukyanov, Yu.E.Penionzhkevich, S.P.Tretyakova, C.Borcea, V.E.Zhuchko, V.A.Gorshkov, K.O.Terenetsky, V.P.Verbitsky, Yu.A.Pozdnyakov Elastic Scattering of 86 MeV 9Li and 55 MeV 6He on 208Pb NUCLEAR REACTIONS 208Pb(9Li, 9Li), E=86 MeV; 208Pb(6He, 6He), E=55 MeV; measured σ(θ); deduced interaction region transparency features. Classical, optical model analyses.
doi: 10.1007/BF01283540
1992VE03 Yad.Fiz. 55, 362 (1992); Sov.J.Nucl.Phys. 55, 198 (1992) Sub-Barrier Scattering of Weakly Bound Neutron-Excess Light Ions NUCLEAR REACTIONS 208Pb(6He, 6He), (8He, 8He), (8Li, 8Li), (11Li, 11Li), (9Be, 9Be), (d, d), E not given; calculated σ(elastic)/σ(Rutherford). Adiabatic model.
1991SK04 Izv.Akad.Nauk SSSR, Ser.Fiz. 55, 2203 (1991); Bull.Acad.Sci.USSR, Phys.Ser. 55, No.11, 119 (1991) N.K.Skobelev, S.M.Lukyanov, Yu.E.Penionzhkevich, S.P.Tretyakova, V.E.Zhuchko, V.A.Gorshkov, K.O.Terenetsky, V.P.Verbitsky, Yu.A.Pozdnyakov Elastic Scattering of 9Li Nuclei at 208Pb Nuclei NUCLEAR REACTIONS 208Pb(9Li, 9Li), E=86 MeV; 208Pb(6He, 6He), E=57 MeV; measured σ(θ) relative to Rutherford scattering; deduced model parameters. Optical model, classical approaches.
1985VE11 Izv.Akad.Nauk SSSR, Ser.Fiz. 49, 945 (1985); Bull.Acad.Sci.USSR, Phys.Ser. 49, No.5, 105 (1985) V.P.Verbitsky, A.P.Ilin, Yu.A.Pozdnyakov, K.O.Terenetsky Angular Distribution of Composite Particle in the Optical Model with Central Absorptive Term NUCLEAR REACTIONS 58Ni(d, d), E=21.6 MeV; 90Zr(α, α), E=40 MeV; 40Ca(α, α), E=29 MeV; 28Si(16O, 16O), E=38 MeV; calculated σ(θ). Optical model, central absorptive term.
1983VE05 Yad.Fiz. 37, 1183 (1983) V.P.Verbitsky, A.P.Ilyin, K.O.Terenetsky Elastic Scattering of Deuterons on 208Pb at Energies below the Coulomb Barrier NUCLEAR REACTIONS 208Pb(d, d), E=8-15 MeV; analyzed σ(θ); deduced nuclear, Coulomb interaction roles. Modified adiabatic theory.
1980VE03 Yad.Fiz. 31, 1134 (1980); Sov.J.Nucl.Phys. 31, 585 (1980) V.P.Verbitsky, Yu.E.Penionzhkevich, V.N.Polyansky, K.O.Terenetsky Analysis of Elastic Scattering of 40Ar, 40,48Ca, and 48Ti Ions on 208Pb NUCLEAR REACTIONS 208Pb(40Ar, 40Ar), (40Ca, 40Ca), E=302 MeV; 208Pb(48Ca, 48Ca), (48Ti, 48Ti), E=252 MeV; analyzed σ(θ); deduced strong absorption radius. Optical model.
1974VE09 Yad.Fiz. 20, 354 (1974); Sov.J.Nucl.Phys. 20, 188 (1975) V.P.Verbitskii, A.K.Zaichenko, V.S.Olkhovskii Concerning an Explanation of Resonances in Neutron Scattering by 24Mg Nuclei NUCLEAR REACTIONS 24Mg(n, n), E=1-14 MeV; calculated σ(E, θ).
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