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NSR database version of April 29, 2024.

Search: Author = V.Soloviov

Found 2 matches.

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2021MA32      Phys.Rev. C 103, 054001 (2021)

P.Maris, E.Epelbaum, R.J.Furnstahl, J.Golak, K.Hebeler, T.Huther, H.Kamada, H.Krebs, Ulf-G.Meissner, J.A.Melendez, A.Nogga, P.Reinert, R.Roth, R.Skibinski, V.Soloviov, K.Topolnicki, J.P.Vary, Yu.Volkotrub, H.Witala, T.Wolfgruber, for the LENPIC Collaboration

Light nuclei with semilocal momentum-space regularized chiral interactions up to third order

NUCLEAR STRUCTURE 3H, 3,4,6,8He, 6,7,8,9Li, 8,10Be, 10,11,12,13B, 12,13,14C, 14,15N, 16O; calculated energies of ground and excited states, S(2n) for 6He and 6Li, α+d breakup up for 6Li, and 3α breakup for 12C, energies, wave functions and radii for 3H, 3,4He. Semilocal momentum-space (SMS) regularized two- and three-nucleon forces up to third chiral order (N2LO), with the two low-energy constants entering the three-body force determined from the triton binding energy and the differential cross-section minimum in elastic nucleon-deuteron scattering. Comparison with experimental data.

NUCLEAR REACTIONS 1H(polarized d, d), E=70, 140, 200, 270 MeV; 2H(p, d), (polarized p, d), E=65 MeV; calculated analyzing powers Ay(θ) and differential cross sections for elastic scattering using semilocal momentum-space (SMS) regularized two- and three-nucleon forces up to third chiral order (N2LO) three-nucleon force (3NF). Comparison with experimental data.

doi: 10.1103/PhysRevC.103.054001
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2020WI04      Phys.Rev. C 101, 054002 (2020)

H.Witala, J.Golak, R.Skibinski, V.Soloviov, K.Topolnicki

Three-nucleon force effects in inclusive spectra of the neutron-deuteron breakup reaction

NUCLEAR REACTIONS 2H(n, n)np, E=14, 70, 135, 200 MeV; calculated differential σ(E, θ), threefold differential σ(E) for the outgoing nucleon in deuteron breakup reaction using three-nucleon Faddeev equation with the CD Bonn nucleon-nucleon potential; deduced magnitudes and the distributions of 3NF effects in incomplete neutron-deuteron breakup. Comparison with experimental data.

doi: 10.1103/PhysRevC.101.054002
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