NSR Query Results
Output year order : Descending NSR database version of May 10, 2024. Search: Author = B.Miller Found 9 matches. 2016DI11 Nucl.Instrum.Methods Phys.Res. A830, 6 (2016) M.P.Dion, B.W.Miller, G.A.Warren Alpha and conversion electron spectroscopy of 238, 239Pu and 241Am and alpha-conversion electron coincidence measurements RADIOACTIVITY 238,239Pu, 241Am(α); measured decay products, Eα, Iα, Eβ, Iβ; deduced conversion electron spectra from 20-55 keV based on fits to the dominant conversion electron emission. Comparison with BrICC, available data.
doi: 10.1016/j.nima.2016.05.041
1992KI10 Phys.Rev. C45, 2290 (1992) W.Kim, B.L.Miller, J.R.Calarco, L.S.Cardman, J.P.Connelly, S.A.Fayans, B.Frois, D.Goutte, J.H.Heisenberg, F.W.Hersman, V.Meot, T.E.Milliman, P.Mueller, C.N.Papanicolas, A.P.Platonov, V.Yu.Ponomarev, J.E.Wise Interplay between Single-Particle and Collective Degrees of Freedom in the Excitation of the Low-Lying States in 140Ce NUCLEAR REACTIONS 140Ce(e, e'), E=190 MeV; measured σ(E(e')), θ=45°. 140Ce levels deduced form factors, transition charge densities, B(λ), configurations. Quasiparticle-phonon model, self-consistent finite Fermi system theory.
doi: 10.1103/PhysRevC.45.2290
1991KI13 Phys.Rev. C44, 2400 (1991) W.Kim, J.R.Calarco, J.P.Connelly, J.H.Heisenberg, F.W.Hersman, T.E.Milliman, J.E.WIse, B.L.Miller, C.N.Papanicolas, V.Yu.Ponomarev, E.E.Saperstein, A.P.Platonov Properties of Low-Lying States in 142Ce via High Resolution Electron Scattering NUCLEAR REACTIONS 142Ce(e, e'), E=100-370 MeV; measured reaction products, Eβ, Iβ; deduced σ(E(e'), θ=45°), form factors, B(E2). 142Ce levels deduced charge densities. Quasiparticle-phonon approach, finite Fermi system.
doi: 10.1103/PhysRevC.44.2400
1991MI02 Phys.Rev. C43, 1677 (1991) R.A.Miskimen, E.A.Ammons, J.D.T.Arruda-Neto, G.O.Bolme, L.S.Cardman, P.L.Cole, J.R.Deininger, S.M.Dolfini, A.J.Linzey, J.B.Mandeville, B.L.Miller, P.E.Mueller, C.N.Papanicolas, A.Serdarevic, S.E.Williamson Use of the (e, e'n) Reaction to Study the Giant Multipole Resonances in 116Sn NUCLEAR REACTIONS 116Sn(e, e'n), E=68.3, 68.4, 99.4 MeV; measured σ(θn, En). 116Sn deduced giant multipole resonance EWSR strengths. Open-shell, continuum RPA.
doi: 10.1103/PhysRevC.43.1677
1990MI03 Phys.Lett. 236B, 251 (1990) R.A.Miskimen, E.A.Ammons, J.D.T.Arruda-Neto, L.S.Cardman, P.L.Cole, J.R.Deininger, S.M.Dolfini, A.J.Linzey, J.B.Mandeville, B.L.Miller, P.E.Mueller, C.N.Papanicolas, A.Serdarevic, S.E.Williamson Coincidence Studies of the Giant Multipole Resonances in 116Sn Using the (e, e'n) Reaction NUCLEAR REACTIONS 116Sn(e, e'n), E ≤ 100 MeV; measured σ(θn) for fixed E, θ(e'). 116Sn deduced transition strengths in giant resonance region.
doi: 10.1016/0370-2693(90)90977-E
1988BO22 Phys.Rev.Lett. 61, 1081 (1988) G.O.Bolme, L.S.Cardman, R.Doerfler, L.J.Koester, Jr., B.L.Miller, C.N.Papanicolas, H.Rothhaas, S.E.Williamson (e, e'n) Coincidence Studies of the Giant Multipole Resonances of 208Pb NUCLEAR REACTIONS 208Pb(e, e'n), E=57-80.4 MeV; measured σ(E(e')), inclusive, coincidence spectra. 208Pb deduced giant multipole resonance strengths.
doi: 10.1103/PhysRevLett.61.1081
1988MI05 Phys.Rev. C37, 895 (1988) B.L.Miller, L.S.Cardman, C.N.Papanicolas, T.E.Milliman, J.P.Connelly, J.H.Heisenberg, F.W.Hersman, J.E.Wise, B.Frois, D.Goutte, V.Meot Electroexcitation of High-Multipolarity Transitions in 140Ce NUCLEAR REACTIONS 140Ce(e, e'), E=100-370 MeV; measured σ(E(e')), σ(θ). 140Ce deduced level, J, π, configuration, γ-multipolarity, quenching factor.
doi: 10.1103/PhysRevC.37.895
1985PA01 Phys.Rev.Lett. 54, 26 (1985) C.N.Papanicolas, S.E.Williamson, H.Rothhaas, G.O.Bolme, L.J.Koester, Jr., B.L.Miller, R.A.Miskimen, P.E.Mueller, L.S.Cardman (e, e'γ) Measurements on the 4.439-MeV State of 12C NUCLEAR REACTIONS 12C(e, e'γ), E=66.9 MeV; measured transverse, longitudinal form factor relative phase, σ(θ(e), θγ).
doi: 10.1103/PhysRevLett.54.26
1979SO04 Phys.Rev.Lett. 43, 1981 (1979) G.Soff, J.Reinhardt, B.Miller, W.Greiner Delta-Electron Emission in Deep-Inelastic Heavy-Ion Collisions NUCLEAR REACTIONS Pb(Xe, X), E=7 MeV/nucleon; calculated energy distribution of delta electrons; deduced reaction time, possible atomic clock for deep-inelastic collisions. Time dependent Schrodinger equation, Dirac Hamiltonian.
doi: 10.1103/PhysRevLett.43.1981
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