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NSR database version of April 24, 2024.

Search: Author = F.Scheibling

Found 55 matches.

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2004AR29      Pisma Zh.Eksp.Teor.Fiz. 80, 429 (2004); JETP Lett. 80, 377 (2004)

R.Arnold, C.Augier, J.Baker, A.Barabash, V.Brudanin, A.J.Caffrey, V.Egorov, J.L.Guyonnet, F.Hubert, Ph.Hubert, L.Jenner, C.Jollet, S.Jullian, A.Klimenko, O.Kochetov, S.Konovalov, V.Kovalenko, D.Lalanne, F.Leccia, I.Linck, C.Longuemare, G.Lutter, Ch.Marquet, F.Mauger, H.W.Nicholson, H.Ohsumi, F.Piquemal, J.-L.Reyss, R.Saakyan, X.Sarazin, F.Scheibling, Yu.Shitov, L.Simard, A.Smolnikov, I.Stekl, J.Suhonen, C.S.Sutton, G.Szklarz, V.Timkin, J.Thomas, V.Tretyak, V.Umatov, L.Vala, I.Vanyushin, S.Vasiliev, V.Vasilyev, V.Vorobel, Ts.Vylov

Study of 2β-Decay of 100Mo and 82Se Using the NEMO3 Detector

RADIOACTIVITY 82Se, 100Mo(2β-); measured 2ν-accompanied 2β-decay T1/2, 0ν-accompanied 2β-decay T1/2 lower limits; deduced bounds on neutrino coupling constants.

doi: 10.1134/1.1830651
Citations: PlumX Metrics


1999AR22      Eur.Phys.J. A 6, 361 (1999)

R.Arnold, C.Augier, J.Baker, A.Barabash, D.Blum, V.Brudanin, A.J.Caffrey, J.E.Campagne, E.Caurier, D.Dassie, V.Egorov, T.Filipova, R.Gurriaran, J.L.Guyonnet, F.Hubert, Ph.Hubert, S.Jullian, O.Kochetov, I.Kisel, V.N.Kornoukhov, V.Kovalenko, D.Lalanne, F.Laplanche, F.Leccia, I.Linck, C.Longuemare, Ch.Marquet, F.Mauger, H.W.Nicholson, I.Pilugin, F.Piquemal, J.-L.Reyss, X.Sarazin, F.Scheibling, J.Suhonen, C.S.Sutton, G.Szklarz, V.Timkin, R.Torres, V.I.Tretyak, V.Umatov, I.Vanyushin, A.Vareille, Yu.Vassilyev, Ts.Vylov

Testing the Pauli Exclusion Principle with the NEMO-2 Detector

RADIOACTIVITY 12C; measured T1/2 lower limits; deduced Pauli principle violation limits.

doi: 10.1007/s100500050354
Citations: PlumX Metrics


1999AR25      Nucl.Phys. A658, 299 (1999)

R.Arnold, C.Augier, J.Baker, A.Barabash, D.Blum, V.Brudanin, A.J.Caffrey, J.E.Campagne, E.Caurier, D.Dassie, V.Egorov, T.Filipova, R.Gurriaran, J.L.Guyonnet, F.Hubert, Ph.Hubert, S.Jullian, I.Kisel, O.Kochetov, V.N.Kornoukhov, V.Kovalenko, D.Lalanne, F.Laplanche, F.Leccia, I.Linck, C.Longuemare, Ch.Marquet, F.Mauger, H.W.Nicholson, I.Pilugin, F.Piquemal, J.-L.Reyss, X.Sarazin, F.Scheibling, J.Suhonen, C.S.Sutton, G.Szklarz, V.Timkin, R.Torres, V.I.Tretyak, V.Umatov, I.Vanyushin, A.Vareille, Yu.Vasilyev, Ts.Vylov

Double Beta Decay of 96Zr

RADIOACTIVITY 96Zr(2β); measured 2ν accompanied 2β decay T1/2, 0ν accompanied 2β decay T1/2 lower limit.

doi: 10.1016/S0375-9474(99)00374-7
Citations: PlumX Metrics


1995AR30      Nucl.Instrum.Methods Phys.Res. A354, 338 (1995)

R.Arnold, A.Barabash, D.Blum, V.Brudanin, J.E.Campagne, F.Danevich, D.Dassie, V.Egorov, R.Eschbach, J.L.Guyonnet, F.Hubert, Ph.Hubert, M.C.Isaac, C.Izac, S.Jullian, O.Kochetov, V.N.Kornoukhov, V.Kouts, V.Kovalenko, D.Lalanne, T.Lamhamdi, F.Laplanche, F.Leccia, Yu.Lepikhin, I.Linck, C.Longuemare, F.Mauger, P.Mennrath, F.Natchez, H.W.Hicholson, A.Nozdrin, G.Pichenot, F.Piquemal, F.Scheibling, C.S.Sutton, G.Szklarz, V.I.Tretyak, V.Umatov, I.Vanushin, Yu.Vassilyev, A.Vareille, Ts.Vylov, Sh.Zaparov, Yu.Zdesenko, and the NEMO Collaboration

Performance of a Prototype Tracking Detector for Double Beta Decay Measurements

RADIOACTIVITY 207Bi(EC), (β+); measured Compton edge γ-spectra, I(ce). 214Bi(β-), (α); 208Tl(β-); measured γ, electron sum spectra; deduced prototype tracking detector performance. Application to 2β-decay studies, Monte Carlo simulations done.

doi: 10.1016/0168-9002(94)01025-0
Citations: PlumX Metrics


1995BO19      Nucl.Phys. A587, 499 (1995)

R.Bougault, J.F.Lecolley, M.Aboufirassi, A.Badala, B.Bilwes, R.Brou, J.Colin, F.Cosmo, D.Durand, J.Galin, A.Genoux-Lubain, D.Guerreau, D.Horn, D.Jacquet, J.L.Laville, C.Le Brun, F.Lefebvres, O.Lopez, M.Louvel, M.Mahi, M.Morjean, C.Paulot, A.Peghaire, G.Rudolf, F.Scheibling, J.C.Steckmeyer, L.Stuttge, S.Tomasevic, B.Tamain

Complete Energy Damping in 29 MeV/Nucleon Pb + Au Two-Body Final-State Reactions

NUCLEAR REACTIONS 197Au(Pb, X), E=29 MeV/nucleon; measured fragment multiplicities; deduced transient excited dinuclear system formation evidence.

doi: 10.1016/0375-9474(95)00041-X
Citations: PlumX Metrics


1995DA37      Phys.Rev. D51, 2090 (1995)

D.Dassie, R.Eschbach, F.Hubert, Ph.Hubert, M.C.Isaac, C.Izac, F.Leccia, P.Mennrath, A.Vareille, C.Longuemare, F.Mauger, F.Danevich, V.Kouts, V.I.Tretyak, Yu.Vassilyev, Yu.Zdesenko, A.B.Barabash, V.N.Kornoukhov, Yu.B.Lepikhin, V.I.Umatov, I.A.Vanushin, C.Augier, D.Blum, J.E.Campagne, S.Jullian, D.Lalanne, F.Laplanche, F.Natchez, G.Pichenot, G.Szklarz, R.Arnold, J.L.Guyonnet, T.Lamhamdi, I.Linck, F.Piquemal, F.Scheibling, V.Brudanin, V.Egorov, O.Kochetov, A.Nozdrin, Ts.Vylov, Sh.Zaparov, H.W.Nicholson, C.S.Sutton, and the NEMO Collaboration

Two-Neutrino Double-β Decay Measurement of 100Mo

RADIOACTIVITY 100Mo(2β); measured 2ν-accompanied 2β-decay T1/2, two-electron spectra, σ(θ(2e)), 0ν-accompanied 2β-decay Majoron emission.

doi: 10.1103/PhysRevD.51.2090
Citations: PlumX Metrics


1995DU04      Phys.Lett. 345B, 397 (1995)

D.Durand, J.Colin, J.F.Lecolley, C.Meslin, M.Aboufirassi, B.Bilwes, R.Bougault, R.Brou, F.Cosmo, J.Galin, A.Genoux-Lubain, D.Guerreau, D.Horn, D.Jacquet, J.L.Laville, C.Le Brun, O.Lopez, M.Louvel, M.Mahi, M.Morjean, A.Peghaire, G.Rudolf, F.Scheibling, J.C.Steckmeyer, L.Stuttge, B.Tamain, S.Tomasevic

Nuclear Disassembly Time Scales Using Space-Time Correlations

NUCLEAR REACTIONS 197Au(Pb, X), E=29 MeV/nucleon; measured three fragment σ(θ) following one-fragment breakup; deduced highly excited nuclei multi-fragmentation T1/2. Nuclear disassembly, space-time correlations.

doi: 10.1016/0370-2693(94)01582-W
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1995LE32      Phys.Lett. 354B, 202 (1995)

J.F.Lecolley, L.Stuttge, M.Aboufirassi, B.Bilwes, R.Bougault, R.Brou, F.Cosmo, J.Colin, D.Durand, J.Galin, A.Genoux-Lubain, D.Guerreau, D.Horn, D.Jacquet, J.L.Laville, F.Lefebvres, C.Le Brun, O.Lopez, M.Louvel, M.Mahi, C.Meslin, M.Morjean, A.Peghaire, G.Rudolf, F.Scheibling, J.C.Steckmeyer, B.Tamain, S.Tomasevic

Neck Formation and Decay in Pb + Au Collisions at 29 MeV/u

NUCLEAR REACTIONS 208Pb(197Au, X), E=29 MeV/nucleon; measured fragment-fragment relative velocity; deduced neck formation, decay, absorption by one of reactants which later decay by binary fission.

doi: 10.1016/0370-2693(95)00600-P
Citations: PlumX Metrics


1994LE12      Phys.Lett. 325B, 317 (1994)

J.F.Lecolley, L.Stuttge, M.Aboufirassi, A.Badala, B.Bilwes, R.Bougault, R.Brou, F.Cosmo, J.Colin, D.Durand, J.Galin, A.Genoux-Lubain, D.Guerreau, D.Horn, D.Jacquet, J.L.Laville, F.Lefebvres, C.Le Brun, J.Lemiere, O.Lopez, M.Louvel, M.Mahi, M.Morjean, C.Paulot, A.Peghaire, N.Prot, G.Rudolf, F.Scheibling, J.C.Steckmeyer, B.Tamain, S.Tomasevic

The Decay of Primary Products in Binary Highly Damped 208Pb + 197Au Collisions at 29 MeV/u

NUCLEAR REACTIONS 197Au(208Pb, X), E=29 MeV/nucleon; measured relative fragment multiplicity evolution vs total kinetic energy; deduced collisions characteristics.

doi: 10.1016/0370-2693(94)90018-3
Citations: PlumX Metrics


1993DU04      Phys.Rev. C47, 2043 (1993)

G.Duchene, P.Romain, F.A.Beck, Ph.Benet, D.Disdier, B.Haas, B.Lott, V.Rauch, F.Scheibling, J.P.Vivien, S.K.Basu, E.Bozek, K.Zuber, D.Di Gregorio, J.Fernandez-Niello

Angular Momentum Distributions for 16O + 144Nd

NUCLEAR REACTIONS, ICPND 144Nd(16O, X), E=67-90 MeV; measured fusion σ(E), γ-multiplicity. Model comparison. Off-line residual X-ray emission detection.

doi: 10.1103/PhysRevC.47.2043
Citations: PlumX Metrics


1993LO11      Phys.Lett. 315B, 34 (1993)

O.Lopez, M.Aboufirassi, A.Badala, B.Bilwes, R.Bougault, R.Brou, J.Colin, F.Cosmo, D.Durand, A.Genoux-Lubain, D.Horn, J.L.Laville, C.Le Brun, J.F.Lecolley, F.Lefebvres, M.Louvel, M.Mahi, C.Paulot, A.Peghaire, G.Rudolf, F.Scheibling, J.C.Steckmeyer, L.Stuttge, B.Tamain, S.Tomasevic

Evidence for Fast and Simultaneous Multi-Fragment Emission in Central Kr + Au Collisions at 60 MeV/u

NUCLEAR REACTIONS 197Au(Kr, X), E=60 MeV/nucleon; measured fragment multiplicities; deduced multi-fragmentation mechanism. Two different models.

doi: 10.1016/0370-2693(93)90154-A
Citations: PlumX Metrics


1993RU04      Phys.Lett. 307B, 287 (1993)

G.Rudolf, S.Tomasevic, M.Aboufirassi, J.C.Adloff, B.Bilwes, R.Bilwes, G.Bizard, R.Bougault, R.Brou, Y.Cassagnou, J.Colin, F.Cosmo, F.Delaunay, D.Durand, J.L.Ferrero, A.Genoux-Lubain, M.Glaser, F.Guilbault, G.M.Jin, J.L.Laville, C.Le Brun, C.Lebrun, J.F.Lecolley, F.Lefebvres, R.Legrain, J.Lemiere, O.Lopez, M.Louvel, M.Mahi, A.Peghaire, J.Peter, B.Rastegar, E.Rosato, F.Scheibling, J.C.Steckmeyer, L.Stuttge, B.Tamain

Fragmentation Pattern in Sequential Emission Spectra

NUCLEAR REACTIONS 197Au(84Kr, X), E=27, 44 MeV/nucleon; 197Au(86Kr, X), E=60 MeV/nucleon; measured σ(fragment θ, E); deduced thermalization process saturation features.

doi: 10.1016/0370-2693(93)90221-3
Citations: PlumX Metrics


1992BL06      Phys.Lett. 275B, 506 (1992)

D.Blum, J.Busto, J.E.Campagne, D.Dassie, F.Hubert, Ph.Hubert, M.C.Isaac, C.Izac, S.Jullian, V.N.Kouts, B.N.Kropivyansky, D.Lalanne, T.Lamhamdi, F.Laplanche, F.Leccia, I.Linck, C.Longuemare, P.Mennrath, F.Natchez, F.Scheibling, G.Szklarz, V.I.Tretyak, Yu.G.Zdesenko

Search for γ-Rays following ββ Decay of 100Mo to Excited States of 100Ru

RADIOACTIVITY 100Mo(2β); measured T1/2 lower limits. High purity Ge detector, Frejus underground laboratory.

doi: 10.1016/0370-2693(92)91624-I
Citations: PlumX Metrics


1992ST02      Nucl.Phys. A539, 511 (1992)

L.Stuttge, J.C.Adloff, B.Bilwes, R.Bilwes, F.Cosmo, M.Glaser, G.Rudolf, F.Scheibling, R.Bougault, J.Colin, F.Delaunay, A.Genoux-Lubain, D.Horn, C.Le Brun, J.F.Lecolley, M.Louvel, J.C.Steckmeyer, J.L.Ferrero

Energy Damping and Intermediate-Velocity Fragment Emission in Peripheral Kr + Au Collisions at 43 MeV/u

NUCLEAR REACTIONS 197Au(84Kr, X), E=43 MeV/nucleon; measured (fragment)(fragment)-coin, Z ≥ 8; deduced intermediate velocity fragment emission mechanism. Event-by-event analysis, triple, fourfold coincidence.

doi: 10.1016/0375-9474(92)90291-Q
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1989ST12      Nucl.Phys. A500, 372 (1989)

J.C.Steckmeyer, G.Bizard, R.Brou, P.Eudes, J.L.Laville, J.B.Natowitz, J.P.Patry, B.Tamain, A.Thiphagne, H.Doubre, A.Peghaire, J.Peter, E.Rosato, J.C.Adloff, A.Kamili, G.Rudolf, F.Scheibling, F.Guilbault, C.Lebrun, F.Hanappe

Transfer Reactions and Sequential Decays of the Projectile-Like Fragments in the 60 MeV/Nucleon 40Ar + (nat)Ag, 197Au Reactions

NUCLEAR REACTIONS 197Au, Ag(40Ar, X), E=60 MeV/nucleon; measured (fragment)(light charged particle)-coin; deduced reaction mechanism. Model calculations.

doi: 10.1016/0375-9474(89)90430-2
Citations: PlumX Metrics


1987ME05      Z.Phys. A326, 353 (1987)

M.C.Mermaz, B.Berthier, J.Barrette, J.Gastebois, A.Gillibert, R.Lucas, J.Matuszek, A.Miczaika, E.Van Renterghem, T.Suomijarvi, A.Boucenna, D.Disdier, P.Gorodetzky, L.Kraus, I.Linck, B.Lott, V.Rauch, R.Rebmeister, F.Scheibling, N.Schulz, J.C.Sens, C.Grunberg, W.Mittig

One-Nucleon Stripping Reactions to Discrete Levels Induced by a 793 MeV 16O Beam on a 208Pb Target

NUCLEAR REACTIONS 208Pb(16O, 16O), (16O, 15N), (16O, 15O), E=793 MeV; measured elastic σ(θ), σ(E(15N)), σ(θ(15N)), σ(E(15O)), σ(θ(15O)). 209Bi, 209Pb states deduced one-nucleon stripping spectroscopic factors. Magnetic spectrometer. EFR-DWBA formalism.

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1438.


1987RO04      Phys.Lett. 185B, 29 (1987)

P.Roussel, J.Barrette, F.Auger, B.Berthier, B.Fernandez, J.Gastebois, A.Gillibert, L.Papineau, W.Mittig, D.Disdier, B.Lott, V.Rauch, F.Scheibling, C.Stephan, L.Tassan-Got

16O + 28Si Elastic Scattering at E(L) = 94 MeV/Nucleon

NUCLEAR REACTIONS 28Si(16O, 16O), E=94 MeV/nucleon; measured σ(θ); deduced potential parameters. Si detectors.

doi: 10.1016/0370-2693(87)91523-1
Citations: PlumX Metrics


1986BE41      Phys.Lett. 182, 15 (1986)

B.Berthier, J.Barrette, J.Gastebois, A.Gillibert, R.Lucas, J.Matuszek, M.C.Mermaz, A.Miczaika, E.Van Renterghem, T.Suomijarvi, A.Boucenna, D.Disdier, P.Gorodetzky, L.Kraus, I.Linck, B.Lott, V.Rauch, R.Rebmeister, F.Scheibling, N.Schulz, J.C.Sens, C.Grunberg, W.Mittig

One-Nucleon Transfer Reactions to Discrete Levels Induced by a 793 MeV 16O Beam on a 208Pb Target

NUCLEAR REACTIONS 208Pb(16O, 15O), (16O, 15N), E=793 MeV; measured σ(E(15O)), σ(E(15N)), σ(θ). 209Pb, 209Bi levels deduced spectroscopic factors. Energy loss magnetic spectrometer. Exact finite-range DWBA calculations.

doi: 10.1016/0370-2693(86)91070-1
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1986RU08      Phys.Rev.Lett. 57, 2905 (1986); Erratum Phys.Rev. 58, 2003 (1987)

G.Rudolf, J.C.Adloff, A.Kamili, F.Scheibling, B.Boishu, A.Genoux-Lubain, C.Le Brun, J.F.Lecolley, F.Lefebvres, M.Louvel, R.Regimbart, O.Granier, S.Leray, R.Lucas, C.Mazur, C.Ngo, M.Ribrag, E.Tomasi

Correlated Sources of Heavy Fragments in the Kr + Au Reaction at 35 and 44 MeV/u

NUCLEAR REACTIONS 197Au(84Kr, X), E=35 MeV/nucleon; 197Au(86Kr, X), E=44 MeV/nucleon; measured (fragment)(fragment)-coin, yields, fragment, projectile velocity ratios, Z distributions; deduced two different mechanisms. Parallel plate avalanche detectors.

doi: 10.1103/PhysRevLett.57.2905
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1985HO09      Nucl.Phys. A437, 465 (1985)

H.Ho, G.Y.Fan, P.L.Gonthier, W.Kuhn, B.Lindl, A.Pfoh, L.Schad, R.Wolski, J.P.Wurm, J.C.Adloff, D.Disdier, V.Rauch, F.Scheibling

Showing of Sequential α-Emission in Deep-Inelastic 32S + 93Nb Collisions: A new probe of fragment lifetimes

NUCLEAR REACTIONS 93Nb(32S, X), E=340 MeV; measured σ(fragment E, θ); 93Nb(32S, αX), E=313 MeV; measured σ(fragment θ, θα), (fragment)(α)(θ), σ(θα, Eα), fragment yield, total kinetic energy vs Z; deduced mechanism, α-emission time dependence.

doi: 10.1016/0375-9474(85)90102-2
Citations: PlumX Metrics


1985ST27      Nuovo Cim. 89A, 333 (1985)

A.Strazzeri, J.C.Adloff, D.Disdier, A.Kamili, V.Rauch, G.Rudolf, F.Scheibling, V.D'Amico

A Semi-Classical Approach Applied to the Sequential α-Emission in the Deeply Inelastic 16O(96 MeV) + 58Ni Collision

NUCLEAR REACTIONS 58Ni(16O, αX), E=96 MeV; analyzed αX(θ), αX(φ) for X=C, N, O; deduced reaction mechanism. Semi-classical approach.

doi: 10.1007/BF02884092
Citations: PlumX Metrics


1984DA09      Z.Phys. A316, 371 (1984)

D.Dalili, P.Lhenoret, R.Lucas, C.Mazur, C.Ngo, M.Ribrag, T.Suomijarvi, E.Tomasi, B.Boishu, A.Genoux-Lubain, C.Lebrun, J.F.Lecolley, F.Lefebvres, M.Louvel, R.Regimbart, J.C.Adloff, A.Kamili, G.Rudolf, F.Scheibling

Experimental Evidence of Highly Energy Relaxed Products in the 35 MeV/u 84Kr + 197Au Reaction

NUCLEAR REACTIONS 197Au(84Kr, X), E=35 MeV/nucleon; measured fragment mass, charge distributions; deduced preponderance of Z=20-28 fragments, production mechanism.

doi: 10.1007/BF01439911
Citations: PlumX Metrics


1983FA06      Z.Phys. A310, 269 (1983)

G.-Y.Fan, H.Ho, P.L.Gonthier, W.Kuhn, A.Pfoh, L.Schad, R.Wolski, J.P.Wurm, J.C.Adloff, D.Disdier, V.Rauch, F.Scheibling

Shadowing of α-Emitting Fragments Observed in 313 MeV 32S + 93Nb Collisions

NUCLEAR REACTIONS 93Nb(32S, X), E=313 MeV; measured αX(θ), α-multiplicity vs Eα, θα; deduced light fragment shadowing α-emission.

doi: 10.1007/BF01419512
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1983HO04      Phys.Rev. C27, 584 (1983)

H.Ho, P.L.Gonthier, G.-Y.Fan, W.Kuhn, A.Pfoh, L.Schad, R.Wolski, J.P.Wurm, J.C.Adloff, D.Disdier, A.Kamili, V.Rauch, G.Rudolf, F.Scheibling, A.Strazzeri

Nonequilibrium α Emission in Deeply Inelastic 16O + 58Ni Collisions at 6 and 9 MeV/Nucleon

NUCLEAR REACTIONS 58Ni(16O, αX), E=6, 9 MeV/nucleon; measured (particle)(α)(θ), energy correlations; deduced reaction mechanism.

doi: 10.1103/PhysRevC.27.584
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1982RU07      Phys.Lett. 118B, 315 (1982)

G.Rudolf, J.C.Adloff, D.Disdier, V.Rauch, F.Scheibling, M.Dakowski, A.Gobbi, K.D.Hildenbrand, W.F.J.Muller, A.Olmi

Influence of Shells on the Driving Potential in Dissipative Collisions

NUCLEAR REACTIONS 232Th(184W, X), E=8.2 MeV/nucleon; measured σ(fragment E, Z), total kinetic energy loss vs Z; deduced shell effects on driving potential. Dissipative collisions, projectile-like fragments.

doi: 10.1016/0370-2693(82)90192-7
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1981HO16      Z.Phys. A300, 205 (1981)

H.Ho, R.Albrecht, H.Damjantschitsch, F.-J.Demond, W.Kuhn, J.Slemmer, J.P.Wurm, D.Disdier, V.Rauch, F.Scheibling, T.Dossing

Angular Momentum Dissipation in 16O + 58Ni Collisions Investigated by Observation of Light Particles and γ Rays

NUCLEAR REACTIONS 58Ni(16O, αX), (16O, pX), E=6 MeV/nucleon; measured α(fragment)(θ, φ), p(fragment)(θ, φ), γ-multiplicity first, second moments; deduced most probable fragment spins. Enriched target. Quantum mechanical treatment.

doi: 10.1007/BF01412296
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1980KU12      Z.Phys. A298, 95 (1980)

W.Kuhn, R.Albrecht, H.Damjantschitsch, H.Ho, R.M.Ronningen, J.Slemmer, J.P.Wurm, I.Rode, F.Scheibling

Fragment Spin Distribution in 400 MeV 40Ar + 93Nb Collisions Investigated by Light-Particle Anisotropies

NUCLEAR REACTIONS 93Nb(40Ar, X), (40Ar, α), (40Ar, p) E=400 MeV; measured (fragment)(fragment)(θ, φ), α, proton velocities, (fragment)(α)(φ), (fragment)p(φ); deduced target-like fragment spin distribution. Semiclassical statistical model.


1979LE02      Phys.Rev.Lett. 42, 429 (1979)

S.M.Lee, J.C.Adloff, P.Chevallier, D.Disdier, V.Rauch, F.Scheibling

Entrance-Channel Resonance Effects in the 24Mg + 16O Reaction

NUCLEAR REACTIONS 24Mg(16O, 12C), 24Mg(16O, 16O), 17 MeV ≤ E(cm) ≤ 31 MeV; measured σ(E, θ). 40Ca deduced resonance effects in entrance channel.

doi: 10.1103/PhysRevLett.42.429
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1977HO27      Z.Phys. A283, 235 (1977)

H.Ho, R.Albrecht, W.Dunnweber, G.Graw, S.G.Steadman, J.P.Wurm, D.Disdier, V.Rauch, F.Scheibling

Pre-Equilibrium Alpha Emission Accompanying Deep-Inelastic 16O + 58Ni Collisions

NUCLEAR REACTIONS 58Ni(16O, X), E=6 MeV/nucleon; measured α(θ), xα-coin; deduced reaction mechanism.

doi: 10.1007/BF01407203
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1976BR07      Phys.Rev. C13, 967 (1976)

F.Brochard, P.Chevallier, D.Disdier, V.Rauch, G.Rudolf, F.Scheibling

12C(α, 8Be)8Be Reaction in the Energy Range E = 17-33 MeV

NUCLEAR REACTIONS 12C(α, 8Be), E=17-33 MeV; measured σ(E, E(8Be), θ). 16O deduced resonances, L. Natural targets.

doi: 10.1103/PhysRevC.13.967
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2026.


1975BR06      J.Phys.(Paris) 36, 113 (1975)

F.Brochard, P.Chevallier, D.Disdier, V.Rauch, F.Scheibling

Etude des Desexcitations Electromagnetiques du Deuxieme Niveau Jπ = 4+ du Noyau 16O Situe a 11.096 MeV

NUCLEAR REACTIONS 12C(α, α), E < 5.5 MeV; measured σ, γγ-coin. 16O resonance deduced level-width, B(E2), E1, E2 matrix elements.

doi: 10.1051/jphys:01975003602011300
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1974AD09      Phys.Rev. C10, 1819 (1974)

J.C.Adloff, K.H.Souw, D.Disdier, F.Scheibling, P.Chevallier, Y.Wolfson

E0 Decay of the First Excited 0+ States in 26Mg and 30Si

NUCLEAR REACTIONS 23Na(α, pγ), E=6.44 MeV; 27Al(α, pγ), E=3.88 MeV; measured σ(Ep, Eγ). 26Mg, 30Si levels deduced B(E0).

doi: 10.1103/PhysRevC.10.1819
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1973BR19      J.Phys.(Paris) 34, 363 (1973)

F.Brochard, P.Chevallier, D.Disdier, V.Rauch, F.Scheibling

Etude des Desexcitations Electromagnetiques des Niveaux 1- Situes a 12.44 et 13.09 MeV dans le Noyau 16O

NUCLEAR REACTIONS 12C(α, γ), E=7.05 MeV; measured Eγ. 16O levels deduced transitions, J, π.

doi: 10.1051/jphys:01973003405-6036300
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1971LI04      Phys.Rev. C3, 20 (1971)

W.-K.Lin, F.Scheibling

p-3He and p-3H Angular Correlations from the Reaction D(3He, p)

NUCLEAR REACTIONS 2H(3He, p), E=16.5, 6.6-7.8 MeV; measured σ(Ep, Et, E(3He), θ(pt), θ(p)(3He)).

doi: 10.1103/PhysRevC.3.20
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1970BR14      J.Phys. (Paris) 31, 255 (1970)

F.Brochard, P.Chevallier, D.Disdier, V.Rauch, F.Scheibling

Etude de 2 Transitions Electromagnetiques entre les 3 Premiers Etats Jπ = 2+ de 16O

NUCLEAR REACTIONS 12C(α, γ), E=3.58, 5.81 MeV; measured γγ-coin. 16O levels deduced level-width, γ-branching. Ge(Li) detector.

doi: 10.1051/jphys:01970003104025500
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1970LI06      Phys.Rev. C1, 816 (1970)

W.-K.Lin, F.Scheibling, R.W.Kavanagh

Investigations of the First Excited State of 4He via the Reaction 7Li(p, α)

NUCLEAR REACTIONS 7Li(p, α), E=9.1 MeV; measured σ(Eα, Ep, Et, θ(αp), θ(αt), θ((α)(3He))). 4He deduced resonance, J, π.

doi: 10.1103/PhysRevC.1.816
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1968GO07      Nucl.Phys. A113, 221(1968)

S.Gorodetzky, J.C.Adloff, F.Brochard, P.Chevallier, D.Disdier, P.Gorodetzky, R.Modjtahed-Zadeh, F.Scheibling

Cascades γ-γ de Quatre Resonances de la Reaction 15N(p, γ)16O

NUCLEAR REACTIONS 15N(p, γ), 15N(p, α1), E=0.4-1.9 MeV; measured σ(E;Eγ), γγ- coin, σ(E;Eα). 16O deduced levels, γ-width, α-width. Enriched target.

doi: 10.1016/0375-9474(68)90896-8
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetF1192.


1967CH21      Phys.Rev. 160, 827 (1967)

P.Chevallier, F.Scheibling, G.Goldring, I.Plesser, M.W.Sachs

Breakup of O16 into Be8+Be8

NUCLEAR STRUCTURE 16O, 12C; measured not abstracted; deduced nuclear properties.

doi: 10.1103/PhysRev.160.827
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1967GO08      Phys.Letters 24B, 578 (1967)

S.Gorodetzky, J.C.Adloff, P.Chevallier, D.Disdier, P.Gorodetzky, V.Rauch, F.Scheibling

Etude de la Transition du Niveau 9.85 MeV au Niveau 6.06 MeV dans 16O

NUCLEAR STRUCTURE 16O, 12C; measured not abstracted; deduced nuclear properties.

doi: 10.1016/0370-2693(67)90395-4
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1966GO18      Phys.Letters 22, 505 (1966)

S.Gorodetsky, J.Adloff, P.Chevallier, D.Disdier, P.Gorodetsky, R.Modjtahed-Zadeh, F.Scheibling

Mise en Evidence d'Une Transition entre Bandes Rotationnelles dans 16O

NUCLEAR STRUCTURE 16O, 12C; measured not abstracted; deduced nuclear properties.

doi: 10.1016/0031-9163(66)91245-5
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1963GO18      Phys.Rev. 131, 1219 (1963)

S.Gorodetzky, F.Scheibling, R.Armbruster, W.Benenson, P.Chevallier, P.Mennrath, G.Sutter, G.Goldring

Radiative Corrections in the Angular Correlation of Monopole Pairs from O16 at Small Angles

NUCLEAR STRUCTURE 16O; measured not abstracted; deduced nuclear properties.

doi: 10.1103/PhysRev.131.1219
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1963GO22      Phys.Letters 6, 269 (1963)

S.Gorodetzky, W.Benenson, P.Chevallier, D.Disdier, F.Scheibling

Transitions au Niveau 6.06 MeV des Etats de O16 Excites par N15(p, γ)O16

NUCLEAR STRUCTURE 15N; measured not abstracted; deduced nuclear properties.

doi: 10.1016/0031-9163(63)90469-4
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1963GO31      J.Phys. 24, 887 (1963)

S.Gorodetzky, P.Mennrath, W.Benenson, P.Chevallier, F.Scheibling

Mesures de Probabilites de Transitions Electromagnetiques dans le Noyau 16O

NUCLEAR STRUCTURE 12C; measured not abstracted; deduced nuclear properties.

doi: 10.1051/jphys:019630024011088700
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1963GO34      J.Phys. 24, 889 (1963)

S.Gorodetzky, G.Sutter, P.Chevallier, F.Scheibling, P.Mennrath

Double Emission Gamma dans les Transitions Monopolaires

NUCLEAR STRUCTURE 40Ca, 16O, 90Zr; measured not abstracted; deduced nuclear properties.


1963SC33      Ann.Phys.(Paris) 8, 353 (1963)

F.Scheibling

Emission of Internal Conversion Pairs-Angular Correlation in the Nucleus B11. Study of Radiative Corrections in the Nucleus O16

NUCLEAR STRUCTURE 16O, 11Be; measured not abstracted; deduced nuclear properties.


1962GO08      Phys.Letters. 1, 14 (1962)

S.Gorodetzky, P.Mennrath, P.Chevallier, F.Scheibling, G.Sutter

Transitions Electromagnetiques 6.92 MeV → 6.06 MeV et 7.12 MeV → 6.06 MeV dans L'O16

NUCLEAR STRUCTURE 19F; measured not abstracted; deduced nuclear properties.

doi: 10.1016/0031-9163(62)90262-7
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1962GO09      Phys.Letters. 1, 24 (1962)

S.Gorodetzky, F.Scheibling, P.Chevallier, P.Mennrath, G.Sutter

Multipolarite de la Transition de 2.14 MeV dans le 11B

NUCLEAR STRUCTURE 11B; measured not abstracted; deduced nuclear properties.

doi: 10.1016/0031-9163(62)90266-4
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1962GO10      Phys.Letters, 1, 116 (1962)

S.Gorodetzky, P.Mennrath, P.Chevallier, F.Scheibling, G.Sutter

Transitions Electromagnetiques 6.92 MeV → 6.13 MeV et 7.12 MeV → 6.13 MeV dans 16O

NUCLEAR STRUCTURE 19F; measured not abstracted; deduced nuclear properties.

doi: 10.1016/0031-9163(62)90290-1
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1962GO15      Phys.Letters 2, 43 (1962)

S.Gorodetzky, P.Mennrath, W.Benenson, P.Chevallier, F.Scheibling, G.Sutter

Transitions Electromagnetiques 8.88 MeV → 6.06 MeV dans 16O

NUCLEAR STRUCTURE 19F; measured not abstracted; deduced nuclear properties.

doi: 10.1016/0031-9163(62)90108-7
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1961GO04      Compt.Rend. 252, 1132 (1961)

S.Gorodetzky, G.Sutter, R.Armbruster, P.Chevallier, P.Mennrath, F.Scheibling, J.Yoccoz

NUCLEAR STRUCTURE 90Y; measured not abstracted; deduced nuclear properties.


1961GO10      Phys.Rev.Letters 7, 170 (1961)

S.Gorodetzky, G.Sutter, R.Armbruster, P.Chevallier, P.Mennrath, F.Scheibling, J.Yoccoz

Double Gamma Emission in the 6.06-MeV Monopole Transition of O16

NUCLEAR STRUCTURE 19F; measured not abstracted; deduced nuclear properties.

doi: 10.1103/PhysRevLett.7.170
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1961GO30      J.phys.radium 22, 688 (1961)

S.Gorodetzky, G.Sutter, R.Armbruster, P.Chevallier, P.Mennrath, F.Scheibling, J.Yoccoz

Recherche d'Une Double Desexcitation γ dans les Transitions Monopolaires de 16O, 40Ca et 90Zr

NUCLEAR STRUCTURE 16O, 90Zr, 90Y, 40Ca; measured not abstracted; deduced nuclear properties.

doi: 10.1051/jphysrad:019610022010068800
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1960GO12      Compt.Rend. 250, 1028 (1960)

S.Gorodetzky, G.Sutter, P.Chevallier, F.Scheibling, R.Armbruster

The Excitation Curves of the Reactions F19(p, α)O16 and Ca40(p, p')Ca40 in γ Rays and in Internal Conversion Pairs

NUCLEAR STRUCTURE 20Ne; measured not abstracted; deduced nuclear properties.


1960GO13      Compt.Rend. 250, 3308 (1960)

S.Gorodetzky, G.Sutter, F.Scheibling, P.Mennrath, P.Chevallier, R.Armbruster

Angular Correlation of Internal Conversion Pairs of the 3.560-MeV Transition of Li6

NUCLEAR STRUCTURE 6Li; measured not abstracted; deduced nuclear properties.


1960GO20      J.Phys.Radium 21, 360 (1960)

S.Gorodetzky, G.Sutter, F.Scheibling, P.Chevallier, R.Armbruster

Excitation Curves for Gamma Radiation and Internal Conversion Pairs from F19(p, α)O16 and Ca40, and Measurement of the Relative Intensity for External Pairs in the Reaction O16(d, p)O17

NUCLEAR STRUCTURE 16O, 17O, 40Ca; measured not abstracted; deduced nuclear properties.

doi: 10.1051/jphysrad:01960002105036000
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