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NSR database version of April 26, 2024.

Search: Author = L.Gallamore

Found 5 matches.

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1995BA18      Phys.Rev.Lett. 74, 1299 (1995)

S.P.Baldwin, B.Lott, B.M.Szabo, B.M.Quednau, W.U.Schroder, J.Toke, L.G.Sobotka, J.Barreto, R.J.Charity, L.Gallamore, D.G.Sarantites, D.W.Stracener, R.T.de Souza

Dissipative Orbiting in 209Bi + 136Xe Collisions at E(lab)/A = 28 MeV

NUCLEAR REACTIONS 209Bi(136Xe, X), E=28 MeV/nucleon; measured charged product yields, (fragment)(light charged particle)-, (fragment)n-coin; deduced dissipative orbiting evidence.

doi: 10.1103/PhysRevLett.74.1299
Citations: PlumX Metrics


1995TO02      Nucl.Phys. A583, 519c (1995)

J.Toke, B.Lott, S.P.Baldwin, B.M.Quednau, W.U.Schroder, L.G.Sobotka, J.Barreto, R.J.Charity, L.Gallamore, D.G.Sarantites, D.W.Stracener, R.T.De Souza

Dynamical Production of Intermediate-Mass Fragments in Peripheral 209Bi + 136Xe Collisions at E(lab)/A = 28 MeV

NUCLEAR REACTIONS 209Bi(136Xe, X), E=28 MeV/nucleon; measured (fragment)(particle)-coin; deduced intermediate mass fragments statistical, fast dynamical emission evidence.

doi: 10.1016/0375-9474(94)00713-W
Citations: PlumX Metrics


1994GA02      Phys.Rev. C49, R584 (1994)

L.Gallamore, D.G.Sarantites, R.J.Charity, N.G.Nicolis, L.G.Sobotka, J.R.Beene, M.L.Halbert, R.L.Varner

Estimation of the Time Scale of Last Chance Alpha Emission using an ' Atomic Clock '

NUCLEAR REACTIONS 100Mo(60Ni, X), E=250 MeV; measured γ(X-ray)-coin, E X-ray, I X-ray, Eα, Iα; deduced K-vacancy filling before α-emission from 160Yb. 160Yb deduced last chance α-emission time scale. Atomic clock technique.

doi: 10.1103/PhysRevC.49.R584
Citations: PlumX Metrics


1992LO04      Phys.Rev.Lett. 68, 3141 (1992)

B.Lott, S.P.Baldwin, B.M.Szabo, B.M.Quednau, W.U.Schroder, J.Toke, L.G.Sobotka, J.Barreto, R.J.Charity, L.Gallamore, D.G.Sarantites, D.W.Stracener, R.T.de Souza

Binary Character of Highly Dissipative 209Bi + 136Xe Collisions at E(lab)/A = 28.2 MeV

NUCLEAR REACTIONS 209Bi(136Xe, nX), E=28.2 MeV/nucleon; measured (particle)n-coin for X=p, d, different neutron multiplicities, charged particle velocity distributions; deduced highly dissipative collision binary nature. 4π detectors.

doi: 10.1103/PhysRevLett.68.3141
Citations: PlumX Metrics


1991SO12      Phys.Rev. C44, R2257 (1991); Erratum Phys.Rev. C46, 819 (1992)

L.G.Sobotka, L.Gallamore, A.Chbihi, D.G.Sarantites, D.W.Stracener, W.Bauer, D.R.Bowman, N.Carlin, R.T.DeSouza, C.K.Gelbke, W.G.Gong, S.Hannuschke, Y.D.Kim, W.G.Lynch, R.Ronningen, M.B.Tsang, F.Zhu, J.R.Beene, M.L.Halbert, M.Thoennessen

Particle Multiplicity Dependence of High-Energy Photon Production in a Heavy-Ion Reaction

NUCLEAR REACTIONS 93Nb(40Ar, X), E=65 MeV/nucleon; measured high energy γ- production vs particle multiplicity.

doi: 10.1103/PhysRevC.44.R2257
Citations: PlumX Metrics


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