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NSR database version of May 2, 2024.

Search: Author = T.D.Xuan

Found 3 matches.

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2022XU08      J.Phys.(London) G49, 105102 (2022)

T.D.Xuan, N.Q.Hung, L.T.Quynh Huong, V.D.Cong, N.N.Anh

Investigation of empirical heat capacity in hot-rotating A ∼ 200 nuclei

NUCLEAR STRUCTURE 184Re, 200Tl, 211Po, 212At; calculated the empirical heat capacities by combining the angular-momentum dependent back-shifted Fermi gas (BSFG) model of nuclear level density (NLD) with the experimental NLD data extracted from the neutron-evaporation spectra.

doi: 10.1088/1361-6471/ac8568
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2021CO17      Eur.Phys.J. A 57, 304 (2021)

V.D.Cong, T.D.Xuan, N.X.Hai, P.D.Khang, L.H.Khiem, N.Q.Hung, N.N.Anh

Normalizing the enhanced generalized superfluid model of nuclear level density

NUCLEAR STRUCTURE 25,27Mg, 29Si, 33P, 34S, 36Cl, 40K, 41,43,45Ca, 47,49,51Ti, 51,53,55Cr, 57,59Fe, 60Co, 61,63,65Ni, 66Cu, 68Zn, 70Ga, 71,73,75Ge, 76As, 77,79Se, 80Br, 81Kr, 83Se, 85Kr, 86,88Rb, 89Sr, 91Zr, 93,94,95Zr, 96,97Mo, 99Mo, 102,104Ru, 104Rh, 105,107Pd, 108,109Pd, 110Ag, 111Cd, 113,114,115Cd, 116In, 117,119,121,123Sn, 124,125Sn, 126Te, 128I, 129,130,131,132Xe, 133Ba, 135Xe, 135,137Ba, 138Ba, 139La, 141Ce, 142Pr, 143,144,145Nd, 146,148Nd, 151Nd, 148,149Sm, 152,153Sm, 153Gd, 155Sm, 155,156Gd, 159Gd, 157Dy, 160Tb, 161,163Dy, 164Dy, 165,167,169,171Er, 170Tm, 171,173,175Yb, 176,177Lu, 178,180Hf, 181,182Ta, 183,185,187W, 188Re, 189,191,193Os, 193,195,197,199Pt, 200,202Hg, 205,207,209Pb, 227Ra, 230Th, 233Th, 234Pa, 235,237U, 238,239Np, 240,242Pu, 243Pu, 243,244,245Cm, 247,249Cm, 250Cf; analyzed available data; deduced nuclear level density normalization parameters. Enhanced generalized superfluid (EGS)model.

doi: 10.1140/epja/s10050-021-00615-4
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2020QU02      Phys.Lett. B 811, 135858 (2020)

N.Quang Hung, N.Dinh Dang, L.Tan Phuc, N.N.Anh, T.D.Xuan, T.V.Nhan Hao

A fully microscopic model of total level density in spherical nuclei

NUCLEAR STRUCTURE 90Zr, 60Ni; calculated nuclear level densities, neutron pairing gap using a fully microscopic model.

doi: 10.1016/j.physletb.2020.135858
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