NSR Query Results


Output year order : Descending
Format : Normal

NSR database version of May 10, 2024.

Search: Author = P.V.Komarov

Found 12 matches.

Back to query form



2001GO15      Yad.Fiz. 64, No 2, 273 (2001); Phys.Atomic Nuclei 64, 228 (2001)

A.M.Gorbatov, P.V.Komarov, P.Yu.Nikishov, A.V.Germanov, D.V.Nechaev

Microscopic Description of Low-Energy Neutron Scattering on a Deuteron

NUCLEAR REACTIONS 2H(n, n), E=0-1 MeV; calculated σ, scattering lengths. Comparison between different nucleus-nucleus potentials and with data.

doi: 10.1134/1.1349443
Citations: PlumX Metrics


2000GO19      Yad.Fiz. 63, No 3, 501 (2000); Phys.Atomic Nuclei 63, 431 (2000)

A.M.Gorbatov, A.V.Germanov, D.V.Nechaev, P.V.Komarov, P.Yu.Nikishov

Microscopic Description of the Reactions d + d → p + 3H and d + d → n + 3He at Low Energies

NUCLEAR REACTIONS 2H(d, p), (d, n), E < 6 MeV; calculated σ, σ(θ). Collective adiabatic approach, sensitivity to nucleon-nucleon potential discussed. Comparisons with data.

doi: 10.1134/1.855650
Citations: PlumX Metrics


2000GO40      Bull.Rus.Acad.Sci.Phys. 64, 420 (2000)

A.M.Gorbatov, A.V.Germanov, D.V.Nechaev, P.V.Komarov, P.Yu.Nikishov

Collective Adiabatic Approach to Microscopic Description of Discrete and Continuous Spectra in a Four-Nucleon System

NUCLEAR REACTIONS 2H(d, p), E=15-120 keV; 2H(d, n), E < 6 MeV; calculated σ. 2H(d, p), (d, n), E=15, 50, 270 keV; calculated σ(θ). Comparison with data.


2000GO53      Bull.Rus.Acad.Sci.Phys. 64, 1817 (2000)

A.M.Gorbatov, A.V.Germanov, P.V.Komarov, D.V.Nechaev, A.Yu.Khazov

Charge Formfactor of 16O Nucleus as a Quartet of α-Particles

NUCLEAR STRUCTURE 16O; calculated matter density, charge form factor. Collective adiabatic approach, 4α-cluster approximation.


1999GO35      Bull.Rus.Acad.Sci.Phys. 63, 813 (1999)

A.M.Gorbatov, P.V.Komarov, A.V.Germanov, D.V.Nechaev

Integral Formulation of the Collective Adiabatic Approach in the Theory of Nuclear Reactions

NUCLEAR STRUCTURE 2,3H; calculated binding energy and root-mean-square charge radius. Collective adiabatic approach, comparison with data.


1998GO29      Bull.Rus.Acad.Sci.Phys. 62, 849 (1998)

A.M.Gorbatov, P.V.Komarov, A.V.Germanov, D.V.Nechaev

Cluster Approximation and Potential Harmonics in the Three-Body Problem


1996GO57      Bull.Rus.Acad.Sci.Phys. 60, 1754 (1996)

A.M.Gorbatov, P.V.Komarov, P.Yu.Nikishov

Microscopic Calculation of the 4He Nucleus Matter Density

NUCLEAR STRUCTURE 4He; calculated mass density. Random walk method. Several potentials compared.


1991GO12      Yad.Fiz. 53, 680 (1991); Sov.J.Nucl.Phys. 53, 425 (1991)

A.M.Gorbatov, V.L.Skopich, E.A.Kolganova, P.V.Komarov, Yu.N.Krylov, V.A.Luchkov, M.I.Marinov, A.V.Bursak

The Method of Multiple Interactions. Realistic NN Potential

NUCLEAR STRUCTURE 16O; calculated binding energy, radius. Different forces, multiple interactions.


1991GO27      Izv.Akad.Nauk SSSR, Ser.Fiz. 55, 971 (1991); Bull.Acad.Sci.USSR, Phys.Ser. 55, No.5, 85 (1991)

A.M.Gorbatov, P.V.Komarov, Yu.N.Krylov, V.L.Skopich, E.A.Kolganova

Self-Consistent Pair-Correlation Operators in Light Nuclei

NUCLEAR STRUCTURE 4He, 16O; calculated pair correlation operator radii. Self-consistent criteria.


1990GO30      Yad.Fiz. 52, 42 (1990); Sov.J.Nucl.Phys. 52, 27 (1990)

A.M.Gorbatov, Yu.N.Krylov, P.V.Komarov, P.Yu.Nikishov, V.A.Luchkov, M.I.Marinov

Method of Angular Potential Functions. Self-Consistent Operators of Pair Correlations

NUCLEAR STRUCTURE 4He; calculated point masses density. Self-consistent pair correlation operators, angular potential function method.


1989GO18      Yad.Fiz. 50, 347 (1989)

A.M.Gorbatov, P.V.Komarov, Yu.N.Krylov, A.V.Bursak, V.L.Skopich, P.Yu.Nikishov, E.A.Kolganova

Multineutron Systems in Hyperspherical Basis

NUCLEAR STRUCTURE 3,4,6,8n; calculated bound state nonexistence. Hyperspherical basis.


1988GO27      Yad.Fiz. 48, 1255 (1988)

A.M.Gorbatov, Yu.N.Krylov, P.Yu.Nikishov, A.V.Bursak, E.A.Kolganova, P.V.Komarov, V.L.Skopich

Multineutron System 4H in Hyperspherical Basis

NUCLEAR STRUCTURE 4H; calculated levels, rms radius. Hyperspherical basis.


Back to query form