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NSR database version of May 24, 2024.

Search: Author = J.B.Carlson

Found 11 matches.

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1994WA37      Nucl.Instrum.Methods Phys.Res. A353, 678 (1994)

T.F.Wang, J.B.Carlson, Z.M.Koenig, W.D.Ruhter, T.S.H.Lee, J.Winn

Monte Carlo Simulation of Plutonium Gamma-Ray Standards

RADIOACTIVITY 241Am, 235U(α); 237U(β-); 238,239,240Pu(α); 241Pu(α), (β-); analyzed Eγ, Iγ data. Monte Carlo simulation of photon transport.

doi: 10.1016/0168-9002(94)91749-3
Citations: PlumX Metrics


1983BE28      Nucl.Instrum.Methods 211, 379 (1983)

J.A.Becker, J.B.Carlson, R.G.Lanier, K.H.Maier, L.G.Mann, G.L.Struble, T.W.Nail, R.K.Sheline, W.Stoffl, L.E.Ussery, J.A.Cizewski, B.Erkkila

In-Beam Gamma-Ray Studies with Tritons

NUCLEAR REACTIONS 208Pb(t, 2n), E=11-16 MeV; measured Eγ, Iγ, relative γ yield vs E, γγ-coin, I(K X-ray), γ(θ). 204Hg(t, 2n), E=16 MeV; measured Eγ, Iγ.

doi: 10.1016/0167-5087(83)90263-6
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1983DE34      Phys.Rev. C28, 1060 (1983)

D.J.Decman, J.A.Becker, J.B.Carlson, R.G.Lanier, L.G.Mann, G.L.Struble, K.H.Maier, W.Stoffl, R.K.Sheline

Electromagnetic Properties of Isomers in 210Pb

NUCLEAR REACTIONS 208Pb(t, p), E=16 MeV; measured γ(θ, H). 210Pb deduced isomer T1/2, μ, g9/2 neutron orbital effective charge.

doi: 10.1103/PhysRevC.28.1060
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1983MA15      Phys.Rev. C27, 1431 (1983)

K.H.Maier, T.Nail, R.K.Sheline, W.Stoffl, J.A.Becker, J.B.Carlson, R.G.Lanier, L.G.Mann, G.L.Struble, J.A.Cizewski, B.H.Erkkila

Structure of 209Bi Deduced from the 208Pb(t, 2nγ) Reaction

NUCLEAR REACTIONS 208Pb(t, 2n), E=11-16 MeV; measured Eγ, Iγ(θ), σ(Eγ), γγ(t), γγ-coin. 209Bi deduced levels, J, π, multiplet structure, γ-multipolarity, γ-branching.

doi: 10.1103/PhysRevC.27.1431
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1982BE38      Phys.Rev. C26, 914 (1982)

J.A.Becker, J.B.Carlson, R.G.Lanier, L.G.Mann, G.L.Struble, K.H.Maier, L.Ussery, W.Stoffl, T.Nail, R.K.Sheline, J.A.Cizewski

2.102-MeV Level in 206Hg and the Spin Gyromagnetic Ratio of the 3-s Proton

NUCLEAR REACTIONS 204Hg(t, p), E=16 MeV; measured γ(θ, H), γ-yields; deduced 3s proton g. 206Hg levels deduced J, π, g, T1/2.

doi: 10.1103/PhysRevC.26.914
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1982MA05      Phys.Rev.Lett. 48, 466 (1982)

K.H.Maier, J.A.Becker, J.B.Carlson, R.G.Lanier, L.G.Mann, G.L.Struble, T.Nail, R.K.Sheline, W.Stoffl, L.Ussery

g Factor of the Jπ = 25/2+ Isomer in 205Tl and the Anomalous Orbital Magnetism of the Proton

NUCLEAR REACTIONS 204Hg(t, 2n), E=16 MeV; measured γ(θ, H, t); deduced g(πh11/2-1). 205Tl level deduced g. Thick, enriched liquid target.

doi: 10.1103/PhysRevLett.48.466
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1980KE08      Z.Phys. A296, 195 (1980)

J.Kern, J.B.Carlson, R.G.Lanier, L.G.Mann, G.L.Struble

In-Beam Study of 174Lu Isomers

NUCLEAR REACTIONS 176Yb(p, 3n), E=22.7 MeV; measured Eγ, Iγ, γγ(t). 174Lu deduced levels, T1/2, γ-multipolarity, hindrance factor, Nilsson assignments. Enriched, thick target.

doi: 10.1007/BF01415833
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1980MA14      Phys.Rev. C21, 2547 (1980)

L.G.Mann, J.B.Carlson, R.G.Lanier, G.L.Struble, W.M.Buckley, R.K.Sheline, Z.Singh

Decay of 180Re: Search for Octupole States in 180W

RADIOACTIVITY 180Re [from 182W(p, 3n), natural targets]; measured Eγ, Iγ, γγ-coin; deduced log ft. 180W deduced levels, E, J, π.

doi: 10.1103/PhysRevC.21.2547
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1979MA08      Phys.Rev. C19, 1191 (1979)

L.G.Mann, J.B.Carlson, R.G.Lanier, G.L.Struble, W.M.Buckley, D.W.Heikkinen, I.D.Proctor, R.K.Sheline

181Ta(p, 2nγ)180W Reaction

NUCLEAR REACTIONS 181Ta(p, 2nγ), E=16 MeV; measured Eγ, Iγ, γγ-coin, T1/2, γ(θ). 180W deduced levels, E, J, π, K.

doi: 10.1103/PhysRevC.19.1191
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1978SH09      Phys.Rev.Lett. 41, 374 (1978)

R.K.Sheline, L.G.Mann, G.L.Struble, R.G.Lanier, J.B.Carlson

Alignment of the K=2- Octupole and Ground-Band Angular Momenta in 180W

NUCLEAR REACTIONS 181Ta(p, 2nγ), E=17 MeV; measured excitation function. 180W K=2- octupole band deduced odd-even energy staggering, structure.

doi: 10.1103/PhysRevLett.41.374
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1977ST17      Phys.Rev.Lett. 39, 533 (1977)

G.L.Struble, I.C.Oelrich, J.B.Carlson, L.G.Mann, R.G.Lanier

Coexistence of Three Nuclear Shapes in 151Eu

NUCLEAR REACTIONS 152Eu(d, t), E=20 MeV; measured σ(Et, θ). 152Eu levels deduced deformation character.

doi: 10.1103/PhysRevLett.39.533
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