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NSR database version of April 11, 2024.

Search: Author = A.Stascheck

Found 6 matches.

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2001DI23      Nucl.Phys. A696, 272 (2001)

H.Diesener, U.Helm, P.von Neumann-Cosel, A.Richter, G.Schrieder, A.Stascheck, A.Stiller, J.Carter

Giant Resonance Spectroscopy of 40Ca with the (e, e'x) Reaction (I): Experiments and overview of results

NUCLEAR REACTIONS 40Ca(e, e'), (e, e'p), (e, e'α), E=78, 183.5 MeV; measured σ(E, θ). 40Ca deduced p, α decay from giant resonance into low-lying states of 39K and 36Ar.

doi: 10.1016/S0375-9474(01)01206-4
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2001DI24      Nucl.Phys. A696, 293 (2001)

H.Diesener, U.Helm, V.Huck, P.von Neumann-Cosel, C.Rangacharyulu, A.Richter, G.Schrieder, A.Stascheck, S.Strauch, J.Ryckebusch, J.Carter

Giant Resonance Spectroscopy of 40Ca with the (e, e'x) Reaction (II): Multipole decomposition of 4π-integrated spectra and angular correlations

NUCLEAR REACTIONS 40Ca(e, e'p), (e, e'α), E=78, 183.5 MeV; measured angular correlations of p, α decay into low-lying states of 39K and 36Ar. 40Ca deduced E0, E1, E2 strength distributions. Continuum RPA calculations.

doi: 10.1016/S0375-9474(01)01209-X
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1999VO22      Nucl.Phys. (Supplement) A654, 743c (1999)

P.von Neumann-Cosel, C.Bahr, F.Hofmann, F.Neumeyer, S.Nishizaki, V.Yu.Ponomarev, C.Rangacharyulu, B.Reitz, A.Richter, G.Schrieder, K.Schweda, A.Stascheck, S.Strauch, T.Waindzoch, J.Wambach

Electric and Magnetic Giant Resonances Studied with Electron Scattering at the S-DALINAC

NUCLEAR REACTIONS 48Ca(e, e'n), E not given; measured En at 180°. 48Ca deduced B(E2+E0), B(E1) distributions vs excitation energy, Giant Resonance features. 48Ca, 90Zr(e, e'), E=66.4 MeV; measured B(M2) distributions vs excitation energy, Giant Resonance features. Comparison with Statistical model and RPA results.

doi: 10.1016/S0375-9474(00)88540-1
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1997VO05      Phys.Rev.Lett. 78, 2924 (1997)

P.von Neumann-Cosel, C.Rangacharyulu, A.Richter, G.Schrieder, A.Stascheck, S.Strauch

Complete Spectroscopy of an Isobaric Anlog Resonance with the (e, e'p) Reaction

NUCLEAR REACTIONS 90Zr(e, e'p), E=85 MeV; measured electron spectra, ep-coin, σ(θ(e), θ(p)). 90Zr deduced analog state Γ, Γγ, Γp.

doi: 10.1103/PhysRevLett.78.2924
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1994DI03      Phys.Rev.Lett. 72, 1994 (1994)

H.Diesener, U.Helm, G.Herbert, V.Huck, P.von Neumann-Cosel, C.Rangacharyulu, A.Richter, G.Schrieder, A.Stascheck, A.Stiller, J.Ryckebusch, J.Carter

Excitation and Decay of Giant Resonances in the 40Ca(e, e'X) Reaction

NUCLEAR REACTIONS 40Ca(e, e'X), E=183.5 MeV; measured σ(θ)/σ(Mott) ratio vs momentum transfer σ(θp, θ(e), Ep); deduced E1, (E2+E0) strength functions, reaction mechanism. Continuum RPA.

doi: 10.1103/PhysRevLett.72.1994
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1994VO05      Nucl.Phys. A569, 373c (1994)

P.von Neumann-Cosel, H.Diesener, U.Helm, G.Herbert, V.Huck, A.Richter, G.Schrieder, A.Stascheck, A.Stiller, J.Ryckebusch, J.Carter, A.A.Cowley, R.W.Fearick, J.J.Lawrie, S.J.Mills, R.T.Newman, J.V.Pilcher, F.D.Smit, Z.Z.Vilakazi, D.M.Whittal

Excitation and Decay of Electric Giant Resonances in the 40Ca(e, e'X) and 40Ca(p, p'X) Reactions

NUCLEAR REACTIONS 40Ca(e, e'p), E=57, 78, 183.5 MeV; measured σ(θ(e), Ep). 40Ca(p, p'α), E=99.1 MeV; 40Ca(e, e'α), E=183.5 MeV; measured proton, α-channel decay. 40Ca deduced electric giant resonance decay features.

doi: 10.1016/0375-9474(94)90128-7
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