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NSR database version of May 10, 2024.

Search: Author = D.Quang Tam

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2023MI03      Phys.Rev. C 107, 024303 (2023)

K.Mizuyama, N.Nhu Le, T.Dieu Thuy, N.Hoang Tung, D.Quang Tam, T.V.Nhan Hao

Complex eigenenergy of the giant dipole resonance for 16O by the Jost function within the random-phase approximation framework

NUCLEAR STRUCTURE 16O; calculated electric dipole (E1) strength distribution, poles in the complex energy plane corresponding to the RPA excited states (e.g. Giant Dipole Resonance). Jost function method extended within the framework of random phase approximation (Jost-RPA). Comparison to results obtained with continuum RPA (cRPA) calculations. Found that the 16O electric dipole giant resonance is formed by multiple poles, each of which is an independent pole with different widths, origins, response properties to residual interactions, and components structures of the density fluctuation.

doi: 10.1103/PhysRevC.107.024303
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2020HO12      Phys.Rev. C 102, 034608 (2020)

N.Hoang Tung, D.Quang Tam, V.N.T.Pham, C.Lam Truong, T.V.Nhan Hao

Effects of velocity-dependent and spin-orbit terms of the Skyrme interaction on neutron elastic scattering observables

NUCLEAR REACTIONS 16O(n, n), (polarized n, n), E=10.0, 14.0, 17.0 MeV; 40Ca(n, n), (polarized n, n), E=9.91, 13.9, 16.92 MeV; 48Ca(n, n), (polarized n, n), E=7.97, 11.9, 16.9 MeV; 208Pb(n, n), (polarized n, n), E=10.0, 13.9, 17.0 MeV; calculated shapes of diagonal contributions W(R, s=0), differential σ(θ, E), analyzing powers Ay(θ, E). Optical potential model generated from the particle-vibration coupling (PVC) approach, and collective excited states from the random-phase approximation (RPA), with and without spin-orbit terms. Comparison with experimental data.

doi: 10.1103/PhysRevC.102.034608
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