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NSR database version of April 29, 2024.

Search: Author = N.Takibayev

Found 15 matches.

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2023KA08      Ukr.J.Phys. 68, 3 (2023)

N.Kalzhigitov, V.O.Kurmangaliyeva, N.Zh.Takibayev, V.S.Vasilevsky

Resonance Structure of 8Be within the Two-Cluster Resonating Group Method

NUCLEAR STRUCTURE 8Be; calculated phase shifts, energy levels, J, π, resonance states, parameters, rms radii with a two-cluster microscopic model. Comparison with available data.

doi: 10.15407/ujpe68.1.3
Citations: PlumX Metrics


2020DU03      Nucl.Phys. A996, 121692 (2020)

A.D.Duisenbay, N.Kalzhigitov, K.Kato, V.O.Kurmangaliyeva, N.Takibayev, V.S.Vasilevsky

Effects of the Coulomb interaction on parameters of resonance states in mirror three-cluster nuclei

doi: 10.1016/j.nuclphysa.2020.121692
Citations: PlumX Metrics


2018VA14      Phys.Rev. C 98, 024325 (2018)

V.S.Vasilevsky, K.Kato, N.Takibayev

Systematic investigation of the Hoyle-analog states in light nuclei

NUCLEAR STRUCTURE 9Be, 9,10,11B, 11,12C; calculated ground state energies of binary subsystems, energies and widths of low-lying three-cluster (2α+n for 9Be, 2α+p for 9B, 2α+d for 10B, 2α+t for 11B, 2α+3He for 11C 3α cluster for 12C) resonance states, and weights of different oscillator shells in the wavefunctions of resonance states, distance between clusters in resonance states, parameters of the Hoyle-analog states, shapes of triangles for selected resonance and Hoyle analog states. Complex scaling method (CSM) and the algebraic model of scattering using the hyperspherical harmonics basis (AMHHB).

doi: 10.1103/PhysRevC.98.024325
Citations: PlumX Metrics


2017TA20      Few-Body Systems 58, 77 (2017)

N.Takibayev

Few-Body Effects in Neutron Star Matter

NUCLEAR STRUCTURE 1n, 113,114Cd; calculated neutron resonances in neutron plus two 113Cd nuclei and in neutron plus one 113Cd plus one 114Cd; deduced new neutron resonance and suggested experiment.

doi: 10.1007/s00601-017-1239-9
Citations: PlumX Metrics


2017VA13      Ukr.J.Phys. 62, 461 (2017)

V.S.Vasilevsky, N.Z.Takibayev, A.D.Duisenbay

Microscopic Description of 8Li and 8B Nuclei within a Three-Cluster Model

NUCLEAR STRUCTURE 8Li, 8Be; calculated resonance states within a three-cluster microscopic model. Comparison with available data.

doi: 10.15407/ujpe62.06.0461
Citations: PlumX Metrics


2017VA17      Phys.Rev. C 96, 034322 (2017)

V.S.Vasilevsky, K.Kato, N.Zh.Takibayev

Formation and decay of resonance states in 9Be and 9B nuclei: Microscopic three-cluster model investigations

NUCLEAR STRUCTURE 9Be, 9B; calculated levels, resonances, J, π, total and partial widths, rotational bands, phase shifts and inelastic parameters, parameters of 1/2+ resonance states, structure of the wave function of 3/2- and 5/2- resonance states, Hoyle analog states. 8Be, 5He, 5Li; calculated energies and widths of resonance states. Three-cluster (α+α+n and α+α+p) microscopic model for mirror nuclei using hyperspherical harmonics, with modified Hasegawa-Nagata potential (MHNP). Comparison with experimental data, and with theoretical calculations using Minnesota potential (MP).

doi: 10.1103/PhysRevC.96.034322
Citations: PlumX Metrics


2011TA07      Few-Body Systems 50, 311 (2011)

N.Zh.Takibayev

Neutron Resonances in Systems of Few Nuclei and Their Possible Role in Radiation of Overdense Stars

doi: 10.1007/s00601-010-0207-4
Citations: PlumX Metrics


2006KR12      Bull.Rus.Acad.Sci.Phys. 70, 815 (2006)

P.M.Krasovitsky, N.Zh.Takibaev

Low-energy interaction of channeled particles


2005TA20      Yad.Fiz. 68, 1195 (2005); Phys.Atomic Nuclei 68, 1147 (2005)

N.Zh.Takibayev

Nature of Coulomb Shifts of Nuclear Scattering Resonances

NUCLEAR REACTIONS 4He, 6Li(n, n), (p, p), E not given; calculated resonance parameters, Coulomb shifts.

NUCLEAR STRUCTURE 5He, 5,7Li, 7Be; calculated resonance parameters, Coulomb shifts.

doi: 10.1134/1.1992569
Citations: PlumX Metrics


2003TA38      Bull.Rus.Acad.Sci.Phys. 67, 732 (2003)

N.Zh.Takibaev, A.S.Liventsova, S.G.Lennik

Low-energy photodisintegration of clusterized nuclei

NUCLEAR REACTIONS 6Li(γ, dα), E ≈ threshold; calculated transition amplitudes, final-state interaction effects.


2000TA17      Yad.Fiz. 63, No 4, 638 (2000); Phys.Atomic Nuclei 63, 574 (2000)

N.Zh.Takibaev

Three-Body Scattering at Positive Energies: Solving the problem of moving logarithmic singularities

doi: 10.1134/1.855670
Citations: PlumX Metrics


1994PE25      Yad.Fiz. 57, No 7, 1300 (1994); Phys.Atomic Nuclei 57, 1232 (1994)

F.M.Penkov, N.Zh.Takibaev

Resonances Generated by Effective Long-Range Potentials in the Three-Body Problem


1993TA09      Yad.Fiz. 56, No 7, 12 (1993); Phys.Atomic Nuclei 56, 863 (1993)

N.Zh.Takibaev, F.M.Penkov

The Effective-Potential Approach in the Three-Body Problem

NUCLEAR REACTIONS 2H(n, n), E=low; calculated scattering length; deduced resonance behavior in σ(E). Effective potential approach.


1989TA23      Yad.Fiz. 50, 373 (1989)

N.Zh.Takibaev, F.M.Penkov

Effective Potential in Neutron-Deuteron Scattering Problem

NUCLEAR REACTIONS 2H(n, n), E not given; calculated scattering amplitudes. Effective potential.


1978KI14      Pisma Zh.Eksp.Teor.Fiz. 27, 73 (1978); JETP Lett. 27, 68 (1978)

D.A.Kirzhnits, N.Z.Takibaev

Triton Binding Energy

NUCLEAR STRUCTURE 3H; calculated binding energy. Interparticle-interaction potential with coupling constant varying with evolution of system.


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Note: The following list of authors and aliases matches the search parameter N.Takibayev: , N.Z.TAKIBAEV, N.Z.TAKIBAYEV