NSR Query Results
Output year order : Descending NSR database version of April 27, 2024. Search: Author = M.Hill Found 7 matches. 2019SP02 Phys.Rev. C 99, 051304 (2019) M.Spieker, A.Gade, D.Weisshaar, B.A.Brown, J.A.Tostevin, B.Longfellow, P.Adrich, D.Bazin, M.A.Bentley, J.R.Brown, C.M.Campbell, C.Aa.Diget, B.Elman, T.Glasmacher, M.Hill, B.Pritychenko, A.Ratkiewicz, D.Rhodes One-proton and one-neutron knockout reactions from N = Z = 28 56Ni to the A = 55 mirror pair 55Co and 55Ni NUCLEAR REACTIONS 9Be(56Ni, 55Co), (56Ni, 55Ni), E=85.9 MeV/nucleon, [secondary 56Ni beam from 9Be(58Ni, X), E=160 MeV/nucleon primary reaction, followed by separation using A1900 fragment separator]; measured Eγ, Iγ, partial σ, and parallel momentum distributions using SeGA array for γ detection, and S800 magnetic spectrograph for knockout residues at the NSCL-MSU facility. 55Co, 55Ni; deduced levels, J, π, mirror energy differences (MEDs) between 55Co and 55Ni, configurations. Comparison with large scale shell model calculations.
doi: 10.1103/PhysRevC.99.051304
2019SP06 Phys.Rev. C 100, 061303 (2019) M.Spieker, D.Weisshaar, A.Gade, B.A.Brown, P.Adrich, D.Bazin, M.A.Bentley, J.R.Brown, C.M.Campbell, C.Aa.Diget, B.Elman, T.Glasmacher, M.Hill, B.Longfellow, B.Pritychenko, A.Ratkiewicz, D.Rhodes, J.A.Tostevin Experimental identification of the T=1, Jπ=6+ state of 54Co and isospin symmetry in A=54 studied via one-nucleon knockout reactions NUCLEAR REACTIONS 9Be(55Co, 54Co), (55Co, 54Fe), E not given, [secondary 55Co beam from 9Be(58Ni, X), E=160 MeV/nucleon, followed by separation of 55Co using A1900 fragment separator at NSCL-MSU]; measured projectile-like reaction residues, Eγ, Iγ, (particle)γ-coin using the S800 spectrograph for particles and SeGA array for γ rays. 54Co, 54Fe; deduced levels, J, π, cross sections for population of levels. Comparison with large-scale-shell-model (LSSM) calculations; investigated possible isospin-symmetry breaking in the A=54, T=1 triplet through the isobaric mass multiplet equation (IMME).
doi: 10.1103/PhysRevC.100.061303
1976SC14 Nucl.Phys. A263, 389 (1976) A.E.Schilling, N.F.Mangelson, K.K.Nielsen, D.R.Dixon, M.W.Hill, G.L.Jensen, V.C.Rogers An Accurate Measurement of the 7Li(d, p)8Li Excitation Function from E = 0.6 MeV to 2.0 MeV NUCLEAR REACTIONS 7Li(d, p), E=0.613-1.948 MeV; measured σ(E). 9Be deduced resonances. Enriched target.
doi: 10.1016/0375-9474(76)90195-0
1974PE15 Nucl.Phys. A235, 205 (1974) R.J.Peel, D.R.Dixon, M.W.Hill, G.L.Jensen, N.F.Mangelson, N.Nath, V.C.Rogers Excitation Functions and Isobaric Analogue States in the 55Mn(p, γ)56Fe Reaction NUCLEAR REACTIONS 55Mn(p, γ), E=1.3-1.85 MeV; measured σ(E, Eγ). 56Fe deduced isobaric analog states, J, π. Natural target.
doi: 10.1016/0375-9474(74)90187-0
1965HI12 BNWL-SA-315 (1965) Gamma-Ray Transitions in Fe58 NUCLEAR STRUCTURE 58Co; measured not abstracted; deduced nuclear properties.
1958HI78 Thesis, Univ.California (1958); UCRL-8423 (1958) Nuclear Decay Studies of Protactinium Isotopes
1957HI92 Bull.Am.Phys.Soc. 2, No.8, 394, R4 (1957); See Also 58Hi78 M.W.Hill, F.S.Stephens, Jr., F.Asaro, I.Perlman Electron-Capture Decay of Ac224
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