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NSR database version of May 3, 2024.

Search: Author = T.D.Kaipov

Found 9 matches.

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1996ZH37      Bull.Rus.Acad.Sci.Phys. 60, 1757 (1996)

M.A.Zhusupov, S.K.Sakhiyev, T.D.Kaipov

Spectroscopic Characteristics of the 9Be Nucleus Studied with Three-Body Model

NUCLEAR STRUCTURE 9Be; calculated wave functions, magnetic dipole, electric quadrupole moments, spectroscopic factors, form factors, rms charge radius. Three-body model.


1991ER06      Czech.J.Phys. B41, 1113 (1991)

R.A.Eramzhyan, M.Gmitro, S.S.Kamalov, T.D.Kaipov, H.Kissener, O.Richter

(e, e'), (γ, π+) and (π-, γ) on 12C and 13C

NUCLEAR REACTIONS 13,12C(e, e'), E not given; calculated longitudinal, transverse form factors. 12C(γ, π+), E=180, 200 MeV; 13C(γ, π+), E=200 MeV; calculated σ(θ).

doi: 10.1007/BF01598988
Citations: PlumX Metrics


1990KU12      Nucl.Phys. A517, 221 (1990)

V.I.Kukulin, V.T.Voronchev, T.D.Kaipov, R.A.Eramzhyan

Detailed Study of the Cluster Structure of Light Nuclei in a Three-Body Model (III). Electromagnetic structure of 6Li

NUCLEAR STRUCTURE 6Li; calculated form factor, transitions, radiative widths. Multi-cluster dynamic model, Pauli projection.

doi: 10.1016/0375-9474(90)90033-I
Citations: PlumX Metrics


1988ER06      J.Phys.(London) G14, 1511 (1988)

R.A.Eramzhyan, M.Gmitro, T.D.Kaipov, S.S.Kamalov, R.Mach

Pion Scattering by 6Li

NUCLEAR REACTIONS 6Li(π+, π+), (π+, π+'), E=80-260 MeV; calculated σ(E), σ(θ), vector polarization.

doi: 10.1088/0305-4616/14/12/012
Citations: PlumX Metrics


1987GM03      Czech.J.Phys. B37, 1107 (1987)

M.Gmitro, T.D.Kaipov, J.Kvasil, J.Rizek

Continuity Equation Constraint in the Transverse Quadrupole Electric-Type Form Factors

NUCLEAR REACTIONS 12C(e, e'), E not given; calculated form factors. Continuity equation constraint.

doi: 10.1007/BF01597028
Citations: PlumX Metrics


1985ER06      Z.Phys. A322, 321 (1985)

R.A.Eramzhyan, T.D.Kaipov, S.S.Kamalov

Spin-Dipole Excitations of 6Li in Charged Pion Photoproduction

NUCLEAR REACTIONS 6Li(γ, π+), E=200 MeV; calculated σ(θ) vs residual nucleus excitation. 6Li deduced spin-isospin dipole resonance strength, fragmentation. Shell model, DWIA approach.

doi: 10.1007/BF01411898
Citations: PlumX Metrics


1985KA22      Phys.Lett. 162B, 260 (1985)

S.S.Kamalov, T.D.Kaipov

On the Contradictory Situation in Coherent 12C(γ, π0) and 4He(γ, π0) Reactions

NUCLEAR REACTIONS 12C(γ, π0), E=230, 290 MeV; 4He(γ, π0), E=290 MeV; calculated coherent pion production σ(θ); deduced nucleon Fermi motion, photoproduction operator pion momentum dependence roles. DWIA.

doi: 10.1016/0370-2693(85)90918-9
Citations: PlumX Metrics


1984ER06      Nucl.Phys. A429, 403 (1984)

R.A.Eramzhyan, M.Gmitro, S.S.Kamalov, T.D.Kaipov, R.Mach

Pion Photoproduction and Inelastic Scattering in A = 12 Nuclei: Transitions to the lowest isovector 1+ and 2+ levels

NUCLEAR REACTIONS 12C(e, e'), E not given; calculated form factors. 12C(π+, π+), E=30, 87.5, 162, 226 MeV; 12C(π+, π+'), E=230, 180, 140, 100 MeV; 12C(γ, π+), E not given; calculated σ(θ). 12C(γ, π-), E not given; calculated σ vs (E(π)). Continuity equation approach.

doi: 10.1016/0375-9474(84)90689-4
Citations: PlumX Metrics


1984KA31      Yad.Fiz. 40, 420 (1984)

S.S.Kamalov, T.D.Kaipov

Investigation of Elementary Amplitudes in 12C(γ, π+) and 16O(γ, π+) Reactions

NUCLEAR REACTIONS 12C, 16O(γ, π+), E=200-360 MeV; 1H(γ, π+), E=180, 240, 320 MeV; calculated σ(θ) vs E; deduced elementary amplitude dependences.


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