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NSR database version of April 27, 2024.

Search: Author = B.B.Sahu

Found 10 matches.

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2022DA16      Chin.Phys.C 46, 124104 (2022)

C.Dash, R.R.Swain, G.Tripathy, I.Naik, B.B.Sahu

Scattering and fusion reaction dynamics of O + Zr system around Coulomb barrier

NUCLEAR REACTIONS 92Zr(16O, X), (16O, 16O), E=45-56 MeV; analyzed available data; deduced optical model parameters, σ, fusion σ, isotopic dependence of fusion probability, a partial wave scattering matrix for the total effective complex potential of nucleus nucleus collisions.

doi: 10.1088/1674-1137/ac92d9
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2020SW01      Int.J.Mod.Phys. E29, 2050016 (2020)

R.R.Swain, C.Dash, P.Mohanty, B.B.Sahu

Scattering and fusion phenomena of 6Li + 209Bi system

NUCLEAR REACTIONS 209Bi(6Li, 6Li), (6Li, X), E<50 MeV; calculated scattering and fusion σ. Comparison with available data.

doi: 10.1142/S0218301320500160
Citations: PlumX Metrics


2019SW02      Int.J.Mod.Phys. E28, 1950041 (2019)

R.R.Swain, B.B.Sahu, P.K.Moharana, S.K.Patra

Nuclear structure and α-decay study of Og isotopes

RADIOACTIVITY 290,292,294,296,298,300,302,304,306,308,310Og(α); calculated T1/2, Q-value. Comparison with available data.

doi: 10.1142/S0218301319500411
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2019SW03      Chin.Phys.C 43, 104103 (2019)

R.R.Swain, B.B.Sahu

Structure and reaction dynamics of SHE Z = 130

RADIOACTIVITY 310,311,312,313,314,315,316,317,318,319,320,321,322,323,324,325,326,327,328130(α), 329,330,331,332,333,334,335,336,337,338,339,340130(SF); calculated Q-values, binding energies, quadrupole deformation parameters, nuclear radii.

doi: 10.1088/1674-1137/43/10/104103
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2018SW01      Chin.Phys.C 42, 084102 (2018)

R.Swain, S.K.Patra, B.B.Sahu

Nuclear structure and decay modes of Ra isotopes within an axially deformed relativistic mean field model

RADIOACTIVITY 210,212,214,218,220,222,224Ra(8Be), (α), 226Ra(α), 210,212,214,218,220Ra(12C), (14C), 224,226Ra(16C), 210,212Ra(16O), 218,220,222,224Ra(18O), 222,224,226Ra(20O), 226Ra(22O); calculated Q-values, T1/2. Comparison with available data.

doi: 10.1088/1674-1137/42/8/084102
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2014SA19      Phys.Rev. C 89, 034614 (2014)

B.B.Sahu, S.K.Singh, M.Bhuyan, S.K.Biswal, S.K.Patra

Importance of nonlinearity in the NN potential

NUCLEAR STRUCTURE 20Ne, 38Ar, 66Zn, 90Zr, 105Sb, 112Cs, 114Cd, 144Sm, 147Tm, 198Hg, 238U; calculated ground state binding energies, charge radii, and quadrupole deformation parameter using SH, L1 and NL3 interactions, and compared with experimental data. 16O, 208Pb, 270Ds; calculated binding energy from different fields of RMF Hamiltonian density with NL3 force, and compared with experimental data.

RADIOACTIVITY 105Sb, 109I, 112,113Cs, 117La, 131Eu, 140,141Ho, 145,146,147Tm(p); calculated half-lives of proton emitters. Relativistic mean field theory (RMFT) with nonlinear self-coupling of the scalar meson field using NR3Y+EX, M3Y+EX and LR3Y+EX nucleon-nucleon interactions. Comparison with experimental data.

doi: 10.1103/PhysRevC.89.034614
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2012GH05      Phys.Rev. C 85, 064327 (2012)

S.K.Ghorui, B.B.Sahu, C.R.Praharaj, S.K.Patra

Examining the stability of Sm nuclei around N = 100

NUCLEAR STRUCTURE 150,152,154,156,158,160,162,164Sm; calculated binding energies, levels, J, π, B(E2), rms charge radius, quadrupole moment, total density distribution, quadrupole deformation parameter, prolate deformed HF neutron and proton orbits. Deformed Hartree-Fock, Skyrme Hartree-Fock+BCS, and relativistic mean-field calculations. Comparison with experimental data. Island of stability near the neutron drip line for N=100, Z AP 62.

doi: 10.1103/PhysRevC.85.064327
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2012SA29      Int.J.Mod.Phys. E21, 1250067 (2012)

B.Sahu, B.B.Sahu

Analysis of nucleus-nucleus fusion cross-section at extreme sub-barrier energies

NUCLEAR REACTIONS 208Pb(16O, X), (16O, 16O), E=80-102 MeV; 208Pb(12C, X), (12C, 12C), E=58.9-84.9 MeV; 64Ni(28Si, X), (28Si, 28Si), E=50-76.5 MeV; calculated fusion σ, σ(θ) at extreme sub-barrier energy. Woods-Saxon nucleus-nucleus potential.

doi: 10.1142/S021830131250067X
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2011SI14      Phys.Rev. C 83, 064601 (2011)

B.B.Singh, B.B.Sahu, S.K.Patra

α-decay and fusion phenomena in heavy ion collisions using nucleon-nucleon interactions derived from relativistic mean-field theory

NUCLEAR REACTIONS 208Pb(12C, X), E(cm)=55-90 MeV; 208Pb(16O, X), E(cm)=70-110 meV; calculated barrier energies, fusion cross sections, fusion barrier distribution. Double-folding model for relativistic mean field-3-Yukawa (R3Y) interaction, comparison with Michigan-3-Yukawa (M3Y) effective NN interactions, and with experimental data.

RADIOACTIVITY 221Fr, 221,222,223,224,226Ra, 223,225Ac, 226,228,230Th, 230,232,233,234,236,238U, 231Pa, 237Np, 236,238Pu, 241Am, 242Cm(α); calculated penetrability. Comparison with experimental data.

doi: 10.1103/PhysRevC.83.064601
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2008SA06      Phys.Rev. C 77, 024604 (2008)

B.Sahu, G.S.Mallick, B.B.Sahu, S.K.Agarwalla, C.S.Shastry

Unified description of scattering and fusion phenomena in heavy-ion collisions

NUCLEAR REACTIONS 208Pb(12C, X), E(cm)=50-110 MeV; 208Pb(16O, X), E=55-95 MeV; calculated scattering and fusion cross sections.

doi: 10.1103/PhysRevC.77.024604
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