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Search: Author = R.T.Kouzes

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2014AG15      Phys.Rev. C 90, 034607 (2014)

E.Aguayo, R.T.Kouzes, E.R.Siciliano

Neutron spallation measurements and impacts on low-background experiments

NUCLEAR REACTIONS H, C, O, Al, Fe, Cu, W, Pb(n, xn), E=20-200 MeV, cosmic-ray neutrons; measured neutron spectra, neutron multiplicity, neutron in-out ratio using 3He-based neutron coincidence counter array at PNNL facility, high-density polyethylene (HDPE) target for hydrogen, carbon and oxygen. Comparison with simulations using GEANT4 and MCNPX codes. Relevance to shielding techniques for the next generation of low-background experiments such as neutrinoless double beta decay, and to estimate background rates.

doi: 10.1103/PhysRevC.90.034607
Citations: PlumX Metrics

1991AB14      Phys.Rev.Lett. 67, 3332 (1991)

A.I.Abazov, O.L.Anosov, E.L.Faizov, V.N.Gavrin, A.V.Kalikhov, T.V.Knodel, I.I.Knyshenko, V.N.Kornoukhov, S.A.Mezentseva, I.N.Mirmov, A.V.Ostrinsky, A.M.Pshukov, N.E.Revzin, A.A.Shikhin, P.V.Timofeyev, E.P.Veretenkin, V.M.Vermul, G.T.Zatsepin, T.J.Bowles, B.T.Cleveland, S.R.Elliott, H.A.O'Brien, D.L.Wark, J.F.Wilkerson, R.Davis, Jr., K.Lande, M.L.Cherry, R.T.Kouzes

Search for Neutrinos from the Sun using the Reaction 71Ga(ν(e), e-)71Ge

doi: 10.1103/PhysRevLett.67.3332
Citations: PlumX Metrics

1990ME08      Phys.Rev. C41, 2921 (1990)

J.T.Meek, W.G.Millen, G.W.Stockton, R.T.Kouzes

Masses of Stable Xeonon Isotopes: Check for internal consistency via ion cyclotron resonance mass spectrometry

NUCLEAR STRUCTURE 129,131,132,134,136Xe; measured mass spectra; deduced differences from standard mass table values.

ATOMIC MASSES 129,131,132,134,136Xe; measured mass spectra; deduced differences from standard mass table values.

doi: 10.1103/PhysRevC.41.2921
Citations: PlumX Metrics

1989CH01      Phys.Rev. C39, 248 (1989)

A.E.Champagne, R.T.Kouzes, A.B.McDonald, M.M.Lowry, D.R.Benton, K.P.Coulter, Z.Q.Mao

127I(3He, t)127Xe Reaction with Relevance to Neutrino Detection

NUCLEAR REACTIONS 127I(3He, t), E=29.78 MeV; measured σ(Et); deduced 127I neutrino capture relevant information.

doi: 10.1103/PhysRevC.39.248
Citations: PlumX Metrics

1989MA28      Phys.Rev. C39, 2180 (1989)

L.G.Mann, R.G.Lanier, G.L.Struble, S.W.Yates, R.A.Naumann, R.T.Kouzes

148Gd(p, t)146Gd Reaction: Neutron states in 146Gd

NUCLEAR REACTIONS, ICPND 148Gd(p, t), E=34.6, 24.9 MeV; measured σ(θ), σ(Et); deduced total σ. 146Gd deduced levels, transfer L, partial σ. QDDD spectrometer, target from isotope separator. DWBA analysis, pairing vibrational model.

doi: 10.1103/PhysRevC.39.2180
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC2675.

1988AV02      Phys.Rev. D37, 618 (1988)

F.T.Avignone III, C.Baktash, W.C.Barker, F.P.Calaprice, R.W.Dunford, W.C.Haxton, D.Kahana, R.T.Kouzes, H.S.Miley, D.M.Moltz

Search for Axions from the 1115-keV Transition of 65Cu

RADIOACTIVITY 65Zn(EC), (β+); measured γγ-coin; deduced axion search constraints.

doi: 10.1103/PhysRevD.37.618
Citations: PlumX Metrics

1988CA22      Phys.Rev. C38, 2550 (1988)

M.Carchidi, M.Burlein, H.T.Fortune, G.P.Gilfoyle, R.Gilman, J.Gorres, P.Kutt, S.Saini, J.W.Sweet, R.T.Kouzes, R.Sherr

70Zn(p, t)68Zn Reaction at E(p) = 35 MeV

NUCLEAR REACTIONS 70Zn(p, t), E=35 MeV; measured σ(Et), σ(θ). 68Zn deduced levels, J, π, L.

doi: 10.1103/PhysRevC.38.2550
Citations: PlumX Metrics

1988CH25      Phys.Rev. C38, 900 (1988)

A.E.Champagne, G.E.Dodge, R.T.Kouzes, M.M.Lowry, A.B.McDonald, M.W.Roberson

Gamma Decays of Isobaric Analog States Relevant to Neutrino Detection

NUCLEAR REACTIONS 81Br, 27Al, 71Ga(3He, t), E=29.9 MeV; 27Al(3He, d), E=29.9 MeV; measured σ(Et), σ(Ed), Eγ, Iγ, γt-, γd-coin. 71Ge, 81Kr deduced IAS γ-branching ratios, neutron decay dominance.

doi: 10.1103/PhysRevC.38.900
Citations: PlumX Metrics

1988CH38      Phys.Rev. C38, 2430 (1988)

A.E.Champagne, R.T.Kouzes, M.M.Lowry, A.B.McDonald, Z.Q.Mao

Decay of the First Isobaric Analog State in 69Ge

NUCLEAR REACTIONS 69Ga(3He, t), E=29.8 MeV; measured σ(Et). 69Ge deduced IAS α-decay branching ratio. Natural target.

doi: 10.1103/PhysRevC.38.2430
Citations: PlumX Metrics

1988CH42      Nucl.Phys. A487, 433 (1988)

A.E.Champagne, C.H.Cella, R.T.Kouzes, M.M.Lowry, P.V.Magnus, M.S.Smith, Z.Q.Mao

Particle Decays in 28Si: The destruction of 27Al in red giants and novae

NUCLEAR REACTIONS 27Al(3He, d), E=20.4 MeV; measured dp-, dα-coin. 28Si deduced Γ(p), Γ(α), Γ(γ), resonance strengths.

doi: 10.1016/0375-9474(88)90622-7
Citations: PlumX Metrics

1988LU02      Phys.Rev. C38, 529 (1988)

K.E.Luther, J.D.Brown, R.T.Kouzes

(α, n) Reaction to High Spin States in 14N and 27Si

NUCLEAR REACTIONS 11B, 12C, 24Mg(α, n), E=47.4 MeV; measured σ(En), θ=0°. 24Si, 14N deduced levels, J, π. Parent, analog comparisons.

doi: 10.1103/PhysRevC.38.529
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC0673.

1987LI12      Nucl.Phys. A469, 393 (1987)

P.C.Li, W.W.Daehnick, S.K.Saha, J.D.Brown, R.T.Kouzes

Nuclear Structure of 86,87Rb from 87,88Sr(d, 3He) at 28 MeV

NUCLEAR REACTIONS 87,88Sr(d, 3He), E=27.9 MeV; measured σ(E(p), θ). 86,87Rb deduced levels, L, J, π, spectroscopic strengths. DWBA analysis.

doi: 10.1016/0375-9474(87)90028-5
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC1325.

1987LO06      Phys.Rev. C35, 1950 (1987)

M.M.Lowry, R.T.Kouzes, F.Loeser, A.B.McDonald, R.A.Naumann

Electron Capture Decay of 81mKr

RADIOACTIVITY 81mKr(EC) [from 81Rb(β++EC)-decay]; measured E X-ray, I X-ray, (ce)(X-ray)-coin; deduced log ft, solar neutrino capture rate reduction. 81Br deduced EC-branching ratio.

doi: 10.1103/PhysRevC.35.1950
Citations: PlumX Metrics

1987WH01      Phys.Rev. C35, 81 (1987)

D.H.White, H.G.Borner, R.W.Hoff, K.Schreckenbach, W.F.Davidson, T.von Egidy, D.D.Warner, P.Jeuch, G.Barreau, W.R.Kane, M.L.Stelts, R.E.Chrien, R.F.Casten, R.G.Lanier, R.W.Lougheed, R.T.Kouzes, R.A.Naumann, R.Dewberry

Nuclear Structure of 231Th from Neutron Capture and (d, p) Reaction Measurements

NUCLEAR REACTIONS 230Th(n, γ), E=thermal, 2 keV; 230Th(d, p), E=20 MeV; measured Eγ, Iγ, I(ce), σ(θp), σ(Ep). 231Th deduced levels, J, π, rotational bands, Nilsson assignments, K. Enriched target, curved crystal, Q3D spectrometer.

doi: 10.1103/PhysRevC.35.81
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC0204.

1986MA40      Phys.Rev. C34, 729 (1986)

L.G.Mann, R.G.Lanier, G.L.Struble, R.A.Naumann, R.T.Kouzes

Mass of 146Gd

NUCLEAR REACTIONS 148Gd(p, t), E=34.6 MeV; measured σ(Et); deduced Q. 146Gd deduced mass excess. QDDD spectrometer, isotope separated target.

doi: 10.1103/PhysRevC.34.729
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1985AL02      Phys.Rev. C31, 360 (1985); Erratum Phys.Rev. C32, 665 (1985)

T.Altzitzoglou, R.T.Kouzes, F.W.Loeser, M.M.Lowry, R.A.Naumann, R.E.Chrien

Measurement of the 158Tb Electron-Capture Q Value

NUCLEAR REACTIONS 158Tb, 207Pb, 158Gd(p, d), E=29.9 MeV; measured σ(Ed), Q. 158Tb deduced Q(EC). Radioactive 158Tb target, Q3D magnetic spectrometer.

doi: 10.1103/PhysRevC.31.360
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1985AL03      Phys.Rev. C31, 697 (1985)

R.Alarcon, J.Rapaport, R.T.Kouzes, W.H.Moore, B.A.Brown

Nucleon Scattering from 34S and the Relative Sign of Neutron and Proton Transition Matrix Elements for the (0 → 2+2) Transition

NUCLEAR REACTIONS 34S(p, p'), E=29.8 MeV; measured σ(Ep), σ(θ). 34S(n, n'), E=21.7 MeV; measured σ(θ); deduced optical model parameters, absolute σ. 34S level deduced σ(θ), neutron to proton matrix element ratios. Coupled-channels analysis.

doi: 10.1103/PhysRevC.31.697
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC0826.

1985CH06      Phys.Rev. C31, 1023 (1985)

T.E.Chupp, R.T.Kouzes, A.B.McDonald, P.D.Parker, T.F.Wang, A.Howard

Total Width of the 5.17 MeV 1- State in 14O and the Hot-CNO Cycle

NUCLEAR REACTIONS 14N(3He, t), E=29.8 MeV; measured residual, triton momentum spectra. 14O level deduced Γ, Γγ/Γ, γ-branching ratio.

doi: 10.1103/PhysRevC.31.1023
Citations: PlumX Metrics

1985LO04      Phys.Rev. C31, 1052 (1985)

M.M.Lowry, R.T.Kouzes

Comment on ' 81Kr-81Br Ground State Mass Difference and Implications for Calibration of a 81Br Solar Neutrino Detector '

ATOMIC MASSES 51V, 51Cr, 81Br, 81Kr; analyzed data; deduced nuclear pair atomic mass differences.

NUCLEAR REACTIONS 51V, 81Br(3He, t), E=24.7 MeV; analyzed data; deduced neutrino energy dependence on production process.

doi: 10.1103/PhysRevC.31.1052
Citations: PlumX Metrics

1984KO10      Phys.Rev. C29, 2343 (1984)

R.T.Kouzes, M.M.Lowry, C.L.Bennett

Calibration of a Gallium Solar Neutrino Detector

NUCLEAR REACTIONS 65Cu, 71Ga(3He, t), E=20.4 MeV; measured σ(Et), Q; deduced implications on gallium solar neutrino detector.

doi: 10.1103/PhysRevC.29.2343
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1984SH20      Phys.Lett. 146B, 25 (1984)

R.Sherr, R.T.Kouzes, B.A.Brown, H.Nann

Excitation of High-Spin States in 49Ti by the (p, π-) and (d, α) Reactions

NUCLEAR REACTIONS 51V(d, α), E=28 MeV; measured σ(Eα), σ(θ). 49Ti deduced levels, L-transfer, J, π. Microscopic DWBA analysis, (p, π-) data input.

doi: 10.1016/0370-2693(84)90635-X
Citations: PlumX Metrics

1983DE03      Phys.Rev. C27, 892 (1983)

R.A.Dewberry, R.T.Kouzes, R.A.Naumann

Mass of 104Cd

NUCLEAR REACTIONS 106Cd(p, t), E=34.6 MeV; measured Et, Q. 104Cd deduced mass excess. Q3D spectrograph.

doi: 10.1103/PhysRevC.27.892
Citations: PlumX Metrics

1983DE19      Nucl.Phys. A399, 1 (1983)

R.A.Dewberry, R.T.Kouzes, R.A.Naumann, R.G.Lanier, H.G.Borner, R.Hoff

The 249Bk(p, t)247Bk Reaction

NUCLEAR REACTIONS 249Bk(p, t), E=15 MeV; measured σ(Et, θ). 247Bk deduced levels, J, π, K.

doi: 10.1016/0375-9474(83)90591-2
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC1319.

1983FI10      Nucl.Phys. A407, 163 (1983)

J.E.Finck, G.M.Crawley, J.A.Nolen, Jr., R.T.Kouzes

A Study of 206Pb by Inelastic Scattering of 35 MeV Protons

NUCLEAR REACTIONS 206Pb(p, p'), E=35 MeV; measured σ(Ep'), σ(θ). 206Pb deduced levels, L, deformation β(L). Collective, microscopic models, RPA, TDA wave functions.

doi: 10.1016/0375-9474(83)90313-5
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC0672.

1982KO06      Phys.Rev. C25, 1076 (1982)

R.T.Kouzes, M.M.Lowry, C.L.Bennett

Ground State Mass of 81Kr and the Solar Neutrino Problem

NUCLEAR REACTIONS 81Br, 51V, 87,85Rb(3He, t), E=24.7 MeV; measured σ(Et), Q. 81Kr deduced mass.

doi: 10.1103/PhysRevC.25.1076
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1981KO13      Phys.Rev. C23, 2743 (1981)

R.T.Kouzes, K.Krien

Mass of 197Hg

NUCLEAR REACTIONS 199Hg(p, t), E=42.34 MeV; measured σ(Et), Q. 197Hg deduced mass excess. Q3D spectrograph.

doi: 10.1103/PhysRevC.23.2743
Citations: PlumX Metrics

1981KO24      Phys.Rev. C24, 1775 (1981)

R.T.Kouzes, M.M.Lowry, C.L.Bennett

Lowest Isobaric Analog States in 79Kr and 81Kr

NUCLEAR REACTIONS 79,81Br(3He, t), E=24.5 MeV; measured σ(Et, θ). 79,81Kr deduced IAS. Q3D spectrograph. DWBA analysis.

doi: 10.1103/PhysRevC.24.1775
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetT0085.

1979HO01      Phys.Rev. C19, 549 (1979)

D.J.Horen, R.T.Kouzes, D.Mueller, F.Calaprice, R.P.Hall

Evidence for Negative Parity for the 7064-keV Level in 208Pb

NUCLEAR REACTIONS 207Pb(d, p), E=26.2 MeV; measured σ(Ep, θ). 208Pb deduced levels, J, π.

doi: 10.1103/PhysRevC.19.549
Citations: PlumX Metrics

1978KO24      Nucl.Phys. A307, 71 (1978)

R.T.Kouzes, D.Mueller

The Mass of 65Co

NUCLEAR REACTIONS 70Zn(3He, 8B), E=80.13 MeV; measured spectrum; deduced Q. 65Co deduced mass excess.

doi: 10.1016/0375-9474(78)90427-X
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1978KO27      Nucl.Phys. A309, 329 (1978)

R.T.Kouzes, P.Kutt, D.Mueller, R.Sherr

Experimental Displacement Energies of Isobaric Analog States in the 1f7/2 Shell

NUCLEAR REACTIONS 46,48,50Ti, 52Cr, 54Fe(p, t), 46,50Ti(p, d), 46,48,50Ti, 52Cr, 54Fe(p, 3He), E ≈ 42-46 MeV; measured particle spectra; deduced Q. 44,46,48Sc, 44,45,46,48,49Ti, 50V, 50Cr, 52Mn, 52Fe deduced analog states. 44,46,48Sc-44,46,48Ca, 44,45,46,48,49Ti-44,45,46,48,49Sc, 50V-50Ti, 50Cr-50V, 52Mn-52Cr, 52Fe-52Mn deduced displacement energies of IAS in 1f7/2 shell.

doi: 10.1016/0375-9474(78)90485-2
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1978KO28      Phys.Rev. C18, 1587 (1978)

R.T.Kouzes, D.Mueller, C.Yu

Mass of 67Ni

NUCLEAR REACTIONS 70Zn(α, 7Be), E=56.11 MeV; measured σ; deduced Q. 67Ni deduced mass excess. QDDD spectrograph.

doi: 10.1103/PhysRevC.18.1587
Citations: PlumX Metrics

1978ST04      Phys.Rev.Lett. 40, 615 (1978)

G.L.Struble, R.G.Lanier, L.G.Mann, R.T.Kouzes, D.Mueller, R.A.Naumann, F.Girshick, I.C.Oelrich, W.H.Moore

(p, t) Reaction as a Probe for the Structure of Odd-Odd Nuclei: Levels In 174Lu

NUCLEAR REACTIONS 176Lu(p, t), E=34.1 MeV; measured σ(Et, θ). 174Lu deduced levels, population intensities, L.

doi: 10.1103/PhysRevLett.40.615
Citations: PlumX Metrics

1978ST09      Phys.Rev. C17, 1564 (1978)

G.L.Struble, R.G.Lanier, L.G.Mann, R.K.Sheline, R.T.Kouzes, W.H.Moore, D.Mueller, R.A.Naumann, I.C.Oelrich

Levels in 189Ir and 191Ir Observed in the (p, t) Reaction

NUCLEAR REACTIONS 191,193Ir(p, t), E=34.7 MeV; measured σ(Et, θ). 189,191Ir deduced levels, L, J, π. Enriched targets.

doi: 10.1103/PhysRevC.17.1564
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1977AD04      Phys.Rev.Lett. 38, 1387 (1977)

G.S.Adams, A.D.Bacher, G.T.Emery, W.P.Jones, R.T.Kouzes, D.W.Miller, A.Picklesimer, G.E.Walker

Excitation of High-Spin 'Particle-Hole' States in 28Si and 24Mg by Inelastic Proton Scattering at Large Momentum Transfer

NUCLEAR REACTIONS 24Mg, 28Si(p, p'), E=135 MeV; measured σ(Ep', θ). 24Mg, 28Si deduced resonances, J, π, T.

doi: 10.1103/PhysRevLett.38.1387
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1976DE24      Nucl.Phys. A265, 220 (1976)

R.M.del Vecchio, R.T.Kouzes, R.Sherr

Experimental Study of (f7/2)7+ States in s-d Shell Nuclei

NUCLEAR REACTIONS 24,26Mg, 28,30Si(α, d), E=40 MeV; 32,34S, 42Ca(α, d), E=34.8 MeV; 36,38,40Ar(α, d), E=34 MeV; 24Mg, 28Si, 32S(3He, p), E=24.5 MeV; measured σ(θ). 26,28Al, 30,32P, 34,36Cl, 38,40,42K, 44Sc deduced levels, L, J, π. DWBA analysis. Resolution 40-110 keV. Enriched targets.

doi: 10.1016/0375-9474(76)90351-1
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetT0266.

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