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NSR database version of May 24, 2024.

Search: Author = V.M.Dubovik

Found 6 matches.

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1996DU19      Bull.Rus.Acad.Sci.Phys. 60, 735 (1996)

V.M.Dubovik, B.Saha

Toroid Polarization of a Magnetic (Spin) Medium and Multipole Radiation

1995DU15      Fiz.Elem.Chastits At.Yadra 26, 72 (1995); Sov.J.Part.Nucl 26, 29 (1995)

V.M.Dubovik, I.V.Lunegov, M.A.Martsenyuk

Toroidal Response in Nuclear Magnetic Resonance

1986BU07      J.Phys.(London) G12, 509 (1986)

V.V.Burov, V.M.Dubovik, S.G.Kadmensky, Yu.M.Tchuvilsky, L.A.Tosunyan

Probability of the Parity-Forbidden Processes 6Li*(J(π)=0(++), T=1; E*=3.56 MeV) → α+d

NUCLEAR STRUCTURE 6Li; calculated α+d relative motion wave function, 0+level decay, formation with this cluster. 6Li level deduced small Γ for α+d channel decay. Parity nonconserving operator.

doi: 10.1088/0305-4616/12/6/009
Citations: PlumX Metrics

1986DU14      Ann.Phys.(New York) 172, 100 (1986)

V.M.Dubovik, S.V.Zenkin

Formation of Parity-Nonconserving Nuclear Forces in the Standard Model SU(2)(L)xU(1)xSU(3)(c)

NUCLEAR REACTIONS 1H(p-bar, p-bar), E=15, 45 MeV; 1H(polarized n, n), 1H(n, γ), (polarized n, γ), E not given; 2H(polarized γ, n), E=1, 10, 30 MeV; 2H(polarized p, p), E=15 MeV; 2H(polarized n, n), (n, γ), E not given; 4He(polarized p, p), E=46 MeV; 4He(polarized n, n), E not given; calculated parity nonconserving effect values. Standard model.

doi: 10.1016/0003-4916(86)90021-7
Citations: PlumX Metrics

1984BU01      J.Phys.(London) G10, L21 (1984)

V.V.Burov, V.M.Dubovik, S.G.Kadmensky, Yu.M.Tchuvilsky, L.A.Tosunyan

Calculation of the Parity-Forbidden Decay Width of 6Li(*)(J(π)=0+, T=1;E(*)=3.56 MeV) → α + d

NUCLEAR STRUCTURE 6Li; calculated continuum parity mixing effects. 6Li level deduced Γ limit for breakup. Six nucleon system, fractional parentage coefficient method, alpha plus deuteron cluster.

doi: 10.1088/0305-4616/10/1/005
Citations: PlumX Metrics

1972BL12      Yad.Fiz. 15, 100 (1972); Sov.J.Nucl.Phys. 15, 59 (1972)

R.E.Bluvshtein, V.M.Dubovik, A.A.Cheshkov

Transition Toroidal Form Factors of Light Nuclei

NUCLEAR REACTIONS 9Be(e, e'), E not given; calculated form factors; analyzed transverse contribution.

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