NSR Query Results
Output year order : Descending NSR database version of April 26, 2024. Search: Author = S.Jena Found 21 matches. 2023CA04 Nature(London) 614, 48 (2023) T.Cai, M.L.Moore, A.Olivier, S.Akhter, Z.Ahmad Dar, V.Ansari, M.V.Ascencio, A.Bashyal, A.Bercellie, M.Betancourt, A.Bodek, J.L.Bonilla, A.Bravar, H.Budd, G.Caceres, M.F.Carneiro, G.A.Diaz, H.da Motta, J.Felix, L.Fields, A.Filkins, R.Fine, A.M.Gago, H.Gallagher, S.M.Gilligan, R.Gran, E.Granados, D.A.Harris, S.Henry, D.Jena, S.Jena, J.Kleykamp, A.Klustova, M.Kordosky, D.Last, T.Le, A.Lozano, X.-G.Lu, E.Maher, S.Manly, W.A.Mann, C.Mauger, K.S.McFarland, B.Messerly, J.Miller, O.Moreno, J.G.Morfin, D.Naples, J.K.Nelson, C.Nguyen, V.Paolone, G.N.Perdue, K.-J.Plows, M.A.Ramirez, R.D.Ransome, H.Ray, D.Ruterbories, H.Schellman, C.J.Solano Salinas, H.Su, M.Sultana, V.S.Syrotenko, E.Valencia, N.H.Vaughan, A.V.Waldron, M.O.Wascko, C.Wret, B.Yaeggy, L.Zazueta Measurement of the axial vector form factor from antineutrino-proton scattering NUCLEAR REACTIONS 1H(ν-bar, μ+), E ∼ 1 GeV; measured reaction products; deduced σ, nucleon axial radius, axial vector form factor. The first high-statistics measurement, MINERvA detector.
doi: 10.1038/s41586-022-05478-3
2021GU22 Eur.Phys.J. A 57, 224 (2021) A unified formalism to study the pseudorapidity spectra in heavy-ion collision
doi: 10.1140/epja/s10050-021-00529-1
2004BE28 Phys.Rev. C 69, 064603 (2004) B.R.Behera, M.Satpathy, S.Jena, S.Kailas, R.G.Thomas, K.Mahata, A.Chatterjee, S.Roy, P.Basu, M.K.Sharan, S.K.Datta Fission fragment angular distributions for the systems 14N + 232Th and 11B + 235U at near and sub-barrier energies NUCLEAR REACTIONS 232Th(14N, X), E=72-92 MeV; 235U(11B, X), E=51-74 MeV; measured fission σ, fragment angular distributions, anisotropy; deduced reaction mechanism features. Comparison with standard statistical saddle-point model predictions.
doi: 10.1103/PhysRevC.69.064603
2002BE78 Phys.Rev. C66, 047602 (2002) B.R.Behera, S.Jena, M.Satpathy, S.Roy, P.Basu, M.K.Sharan, M.L.Chatterjee, S.Kailas, K.Mahata, S.K.Datta Statistical model analysis of fission fragment angular distributions for the system 16O+181Ta NUCLEAR REACTIONS 181Ta(16O, F), E=90-110 MeV; measured fission, fusion, evaporation residue σ, fission fragment angular distributions, anisotropies. Comparison with saddle point model results, other data analyzed.
doi: 10.1103/PhysRevC.66.047602
2002JE03 Nucl.Phys. A699, 649 (2002) S.N.Jena, P.Panda, T.C.Tripathy Radiative Decay Widths of Mesons Beyond Static Approximation in a Relativistic Potential Model
doi: 10.1016/S0375-9474(01)01299-4
2001BE52 Phys.Rev. C64, 041602 (2001) B.R.Behera, S.Jena, M.Satpathy, S.Kailas, K.Mahata, A.Shrivastava, A.Chatterjee, S.Roy, P.Basu, M.K.Sharan, S.K.Datta Entrance-Channel Effect in Fission Fragment Anisotropies from 11B + 235U and 14N + 232Th Systems NUCLEAR REACTIONS 235U(11B, F), E=64-72 MeV; 232Th(14N, F), E=80-92 MeV; measured fission fragment angular distributions, anisotropies; deduced entrance channel effect. Statistical saddle point model.
doi: 10.1103/PhysRevC.64.041602
2001BE76 Pramana 57, 199 (2001) B.Behera, S.Roy, P.Basu, M.K.Sharan, S.Jena, M.Satpathy, M.L.Chatterjee, S.K.Datta Measurement of Fission Anisotropy for 16O + 181Ta NUCLEAR REACTIONS 181Ta(16O, F), E=83-120 MeV; analyzed fission σ, fragment angular distributions, anisotropy. Transition state model.
doi: 10.1007/s12043-001-0175-9
1999BE70 Pramana 53, 563 (1999) B.R.Behera, S.Roy, P.Basu, M.K.Sharan, S.Jena, M.Satpathy, S.K.Datta, L.Satpathy, M.L.Chatterjee Fission Fragment Angular Distributions in 16O + 181Ta NUCLEAR REACTIONS 181Ta(16O, F), E=92, 98, 108 MeV; measured fission σ, fragments energies, angular distributions. Comparison with statistical model predictions.
doi: 10.1007/s12043-999-0032-9
1999JE09 Nucl.Phys. A658, 249 (1999) S.N.Jena, S.Panda, T.C.Tripathy A Static Calculation of Radiative Decay Widths of Mesons in a Potential Model of Independent Quarks
doi: 10.1016/S0375-9474(99)00332-2
1998JE01 Int.J.Mod.Phys. E7, 69 (1998) Electromagnetic Form Factors and Static Properties of the Nucleons in a Chiral Symmetric Quark Model NUCLEAR STRUCTURE 1n, 1H; calculated radii, magnetic moments, form factors. Chiral quark model.
doi: 10.1142/S0218301398000038
1998JE07 Int.J.Mod.Phys. E7, 425 (1998) Contributions of the Pion-Cloud to the Magnetic Moments of Nucleon Octet in a Relativistic Quark Model
doi: 10.1142/S021830139800021X
1997JE03 Phys.Rev. C55, 3015 (1997) Pion Nucleus Potential from Scattering Data and a Test of Charge Symmetry NUCLEAR REACTIONS 4He(π+, X), E=51, 60, 68, 75 MeV; 12C(π+, X), E=30, 40, 50 MeV; calculated complex inversion potential; deduced charge symmetry breaking aspects. Analytic mapping techniques.
doi: 10.1103/PhysRevC.55.3015
1996JE01 Phys.Rev. C54, 353 (1996) Field-Theoretical Description of Nuclear Matter with Only the Pion-Nucleon Interaction
doi: 10.1103/PhysRevC.54.353
1996JE05 Pramana 47, 233 (1996) Electromagnetic Form Factors of Nucleons in a Relativistic Square-Root Potential Model of Independent Quarks NUCLEAR STRUCTURE 1H; calculated charge, magnetic form factor, μ, charge radius. 1n; calculated magnetic form factor, charge radius. Relativistic square-root potential model of independent quarks.
doi: 10.1007/BF02847767
1993JE03 J.Phys.(London) G19, 837 (1993) Magnetic Moments of the Nucleon Octet in an Independent-Quark Model with Chiral Symmetry NUCLEAR STRUCTURE 1H, 1n; calculated μ. Independent quark model.
doi: 10.1088/0954-3899/19/6/005
1992JE01 J.Phys.(London) G18, 273 (1992) Contributions of the Pion-Cloud to the Nucleon Electromagnetic Properties in a Relativistic Potential Model of Independent Quarks NUCLEAR STRUCTURE 1n, 1H; calculated electric charge, magnetic form factors; deduced pion cloud contributions. Relativistic potential models.
doi: 10.1088/0954-3899/18/2/010
1991JE03 Pramana 37, 47 (1991) Weak Electric and Magnetic Form Factors for Semileptonic Baryon Decays in a Relativistic Quark Model NUCLEAR STRUCTURE 1n; calculated weak electric, magnetic form factor ratios in decay. Relativistic quark model.
doi: 10.1007/BF02847576
1990BA07 Phys.Rev. D41, 1568 (1990) Nucleon Form Factors and Static Properties of Baryons in a Quark Model NUCLEAR STRUCTURE 1n, 1H; calculated form factors. Quark model.
doi: 10.1103/PhysRevD.41.1568
1989RA26 Pramana 32, 753 (1989) A Quark Model Study of Semileptonic Baryon Decays in the Electronic Decay Modes RADIOACTIVITY 1n(β-); calculated decay related weak electric form factor ratio. Quark model.
doi: 10.1007/BF02845996
1985DE37 Phys.Rev. C32, 1247 (1985) Pion-Helium Potential by Inverse Scattering Method NUCLEAR REACTIONS 4He(π-, π-), E=51, 60, 68, 75, 110 MeV; calculated pion-nucleus potential parameters. Phase shift analysis, inverse scattering method.
doi: 10.1103/PhysRevC.32.1247
1980JE03 Z.Phys. A296, 323 (1980) Inelasticity Corrections in the Elastic Proton-Deuteron Back-Angle Scattering at Intermediate Energies NUCLEAR REACTIONS 2H(p, p), E=1.5-2.5 GeV; calculated σ(θ). Kerman-Kisslinger model, generalized baryon transfer.
doi: 10.1007/BF01438527
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