NSR Query Results
Output year order : Descending NSR database version of May 8, 2024. Search: Author = S.Dhar Found 6 matches. 2007DH06 Pramana 69, 387 (2007) Computation of triple differential cross-sections with the inclusion of exchange effects in atomic K-shell ionization by relativistic electrons for symmetric geometry ATOMIC PHYSICS Ag, Cu(e, e'), E=300, 500 keV; calculated K-shell ionization σ using multiple scattering theory. Compared results to other model calculations and available data.
doi: 10.1007/s12043-007-0140-3
2001LI68 Hyperfine Interactions 136/137, 215 (2001) K.-P.Lieb, E.Galindo-Leon, S.Dhar Magnetic Moment Measurement of Short Lived States via the Doppler Shift Transient Field Method NUCLEAR REACTIONS 50Cr(58Ni, 2pα), E=240 MeV; 19F(58Ni, n2p), E=214 MeV; calculated precession angles for magnetic moment determination. Doppler shift transient field method.
doi: 10.1023/A:1020536400474
1987JA09 Hyperfine Interactions 34, 251 (1987) Lattice Instability in Hf1(x)Ta(x)V2 Compounds RADIOACTIVITY 181Hf(β-); measured γγ(θ, H, t); deduced 181Ta probe electric quadrupole frenquency vs temperature.
doi: 10.1007/BF02072715
1987SA06 Phys.Rev. B35, 2035 (1987) E.V.Sampathkumaran, N.Nambudripad, S.K.Dhar, R.Vijayaraghavan, R.Kuentzler Characterization of the Valence Transition in Yb(x)In(1-x)Cu2 and Anomalous 115In Knight-Shift Behavior NUCLEAR MOMENTS 115In; measured NMR Knight shift; deduced anomalous valence transition of Yb ions.
doi: 10.1103/PhysRevB.35.2035
1983DE58 Hyperfine Interactions 15/16, 705 (1983) S.H.Devare, S.K.Dhar, S.K.Malik, H.G.Devare Quadrupole Interaction at 111Cd in RRh3B2 Compounds (R = Ce to Gd) and Absence of Transferred Hyperfine Field at 111Cd in GdRh3B2 RADIOACTIVITY 111In(EC); measured γγ(θ, H, t); deduced 111Cd quadrupole interaction in RRh3B2 compounds.
doi: 10.1007/BF02147347
1957MC57 Phys.Rev. 106, 1074 (1957) Electron Scattering from the Deuteron and the Neutron-Proton Potential NUCLEAR REACTIONS 2H(E, E), E=400, 500 MeV; measured reaction products, Eβ, Iβ; deduced σ(θ) divided by the Mott cross sections. Comparison with theoretical calculations.
doi: 10.1103/PhysRev.106.1074
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