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NSR database version of April 26, 2024.

Search: Author = H.Schmidt-Bocking

Found 20 matches.

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2004SC25      Nucl.Phys. A737, 306 (2004)

H.Schmidt-Bocking, R.Dorner, O.Jagutzki, T.Jahnke, V.Mergel, L.Ph.H.Schmidt, Th.Weber, A.Czasch, Ch.Wimmer, M.Hattass, A.Knapp, M.Schoffler, C.L.Cocke, M.Prior, A.Kheifets, E.Weigold, F.Afaneh

Many-particle dynamics in atomic and molecular physics investigated with the COLTRIMS-technique: New inside into e-e- correlation

doi: 10.1016/j.nuclphysa.2004.03.093
Citations: PlumX Metrics


2000ST19      Eur.Phys.J. A 8, 87 (2000)

K.E.Stiebing, K.A.Muller, J.Baumann, K.Bethge, J.Bernhardt, H.Bokemeyer, H.Folger, O.Frohlich, O.Hohn, G.Kavermann, G.Lambrinidis, A.Muller, J.Peter, S.Runkel, L.Schmidt, H.Schmidt-Bocking, P.Senger, P.Thee, J.Ullrich

On the Spectroscopy of Atomic Electrons (Positrons) in the Energy Range of 10 to 50 MeV from Heavy-Ion Collisions at Intermediate Energies

NUCLEAR REACTIONS Pb(Pb, X), E=60 MeV/nucleon; calculated electron, positron spectra, detector design characteristics. Monte Carlo simulations.

RADIOACTIVITY 12B(β-) [from 11B(d, p)]; measured Eβ, Iβ. Test of prototype detector.

doi: 10.1007/s100500070122
Citations: PlumX Metrics


1999KH01      J.Phys.(London) B32, L73 (1999)

Kh.Khayyat, T.Weber, R.Dorner, M.Achler, V.Mergel, L.Spiedlberger, O.Jagutzki, U.Meyer, J.Ullrich, R.Moshammer, W.Schmitt, H.Knudsen, U.Mikkelsen, P.Aggerholm, E.Uggerhoej, S.P.Moeller, V.D.Rodriguez, S.F.C.O'Rourke, R.E.Olson, P.D.Fainstein, J.H.McGuire, H.Schmidt-Bocking

Differential Cross Sections in Antiproton- and Proton-Helium Collisions

ATOMIC PHYSICS 4He(p-bar, p-bar), (p, p), E ≈ 1 MeV; measured recoil momentum following ionization.

doi: 10.1088/0953-4075/32/4/002
Citations: PlumX Metrics


1995KU43      Phys.Lett. 207A, 199 (1995)

P.Kurpick, T.Bastug, B.Fricke, W.-D.Sepp, A.Warczak, M.Jager, J.Ullrich, T.Kandler, M.Schulz, A.Demian, M.Damrau, H.Brauning, H.Schmidt-Bocking

Full Scale Relativistic ab initio Time Dependent Calculations for the L-K Vacancy Transfer in 208 MeV Ni23+ on a Ge Solid Target

NUCLEAR REACTIONS Ge(Ni, X), E=208 MeV; calculated L-K vacancy transfer, probabilities in Ni, Ge. Dirac-Fock-Slater method.

ATOMIC PHYSICS Ge(Ni, X), E=208 MeV; calculated L-K vacancy transfer, probabilities in Ni, Ge. Dirac-Fock-Slater method.

doi: 10.1016/0375-9601(95)00681-R
Citations: PlumX Metrics


1994UL03      Nucl.Instrum.Methods Phys.Res. B87, 70 (1994)

J.Ullrich, R.Dorner, H.Berg, C.L.Cocke, J.Euler, K.Froschauer, S.Hagmann, O.Jagutzki, S.Lencinas, R.Mann, V.Mergel, R.Moshammer, H.Schmidt-Bocking, H.Tawara, M.Unverzagt

Single and Double Ionization of Helium for Fast, Highly-Charged Ion-Impact

NUCLEAR REACTIONS He(Ne, X), (Ni, X), (Kr, X), E=0.08-1.5 GeV/nucleon; measured double to single ionization σ ratio; deduced shake-off limit evidence features.

ATOMIC PHYSICS He(Ne, X), (Ni, X), (Kr, X), E=0.08-1.5 GeV/nucleon; measured double to single ionization σ ratio; deduced shake-off limit evidence features.

doi: 10.1016/0168-583X(94)95238-8
Citations: PlumX Metrics


1993DO15      J.Phys.(London) B26, 3559 (1993)

R.Dorner, K.Ullmann, J.Euler, R.Koch, I.Legrand, R.Seip, J.Ullrich, H.Schmidt-Bocking

Sm L-Subshell Ionization Probabilities and Alignment as a Function of the Impact Parameter for 1 MeV Proton Impact

NUCLEAR REACTIONS Sm(p, X), E=1 MeV; measured L subshell ionization probabilities vs impact parameter; deduced quasiadiabatic wavefunction adjustment possible reason. Standard SCA, coupled-channels models.

ATOMIC PHYSICS Sm(p, X), E=1 MeV; measured L subshell ionization probabilities vs impact parameter; deduced quasiadiabatic wavefunction adjustment possible reason. Standard SCA, coupled-channels models.

doi: 10.1088/0953-4075/26/20/016
Citations: PlumX Metrics


1991BR30      Phys.Rev. A44, 2868 (1991)

H.Brauning, K.Ullmann, V.Dangendorf, H.Schmidt-Bocking, D.Trautmann, Th.Kauer

Influence of Recoil Effect in Ti K-Shell Ionization Probabilities

NUCLEAR REACTIONS Ti(p, X), (d, X), (α, X), E=0.5 MeV/nucleon; measured K-shell ionization probabilities. Semi-classical approximation calculations.

ATOMIC PHYSICS Ti(p, X), (d, X), (α, X), E=0.5 MeV/nucleon; measured K-shell ionization probabilities. Semi-classical approximation calculations.

doi: 10.1103/PhysRevA.44.2868
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1991LE32      Nucl.Instrum.Methods Phys.Res. B56/57, 21 (1991)

I.C.Legrand, A.Berinde, C.Ciortea, A.Enulescu, D.Fluerasu, I.Piticu, V.Zoran, H.Schmidt-Bocking

Coupled Subshell Description of L-Shell Ionization in Asymmetric Ion-Atom Collisions

NUCLEAR REACTIONS 197Au, Th(9Be, X), (C, X), (19F, X), (Mg, X), (Si, X), (S, X), E=0.5-2.5 MeV/nucleon; measured L-subshell ionization σ(E); deduced direct Coulomb ionization, valency sharing features. Coupled subshell description, asymmetric ion-atom collisions.

ATOMIC PHYSICS 197Au, Th(9Be, X), (C, X), (19F, X), (Mg, X), (Si, X), (S, X), E=0.5-2.5 MeV/nucleon; measured L-subshell ionization σ(E); deduced direct Coulomb ionization, valency sharing features. Coupled subshell description, asymmetric ion-atom collisions.

doi: 10.1016/0168-583X(91)95961-C
Citations: PlumX Metrics


1990WI20      Z.Phys. D17, 145 (1990)

G.Wintermeyer, V.Dangendorf, H.Schmidt-Bocking, T.Kambara, P.H.Mokler, R.Schuch, I.Tserruya

Search for Interference Structures in the Quasimolecular X-Ray- and K-Vacancy Production in Close Collisions of 462 MeV Hydrogen-Like Kr Ions on Mo Solid Targets

NUCLEAR REACTIONS Mo(Kr, X), E=462 MeV; measured X-ray yields; deduced K-vacancy probability.

doi: 10.1007/BF01437670
Citations: PlumX Metrics


1988SC09      Z.Phys. D8, 271 (1988)

W.Schadt, H.Schmidt-Bocking, G.Nolte, Z.Roller, A.Skutlartz, M.Wassermann, G.Zschornack

Nd, Yb, Au and U L-Subshell Ionization Probabilities for 92 MeV Ar Impact

NUCLEAR REACTIONS Nd, Yb, 197Au, U(Ar, X), E=92 MeV; measured (X-ray)(particle)-coin; deduced L-subshell X-ray emission probabilities.

doi: 10.1007/BF01436951
Citations: PlumX Metrics


1987SC12      Nucl.Instrum.Methods Phys.Res. B24/25, 64 (1987)

H.Schmidt-Bocking, J.Ullrich, R.Dorner, K.Dexheimer, S.Kelbch, V.Dangendorf, R.Schuch, S.Zehendner, S.Hagmann, G.B.Baptista

L-Subshell Ionization Probabilities in very Asymmetric Ion-Atom Collisions

ATOMIC PHYSICS Sm(p, X), E=4 MeV; Yb, Pt(Ne, X), Pt(He, X), E=0.9 MeV/nucleon; measured L-subshell ionization probabilities. Si-Li detectors.

doi: 10.1016/0168-583X(87)90590-8
Citations: PlumX Metrics


1987ZE01      Z.Phys. D4, 243 (1987)

S.Zehendner, G.B.Baptista, R.Dorner, E.Justiniano, J.Konrad, H.Schmidt-Bocking, R.Schuch

Impact Parameter Dependence of the L-Subshell Ionization Probabilities and of the L3-Subshell Alignment Tensor Components in 4 MeV p-Sm Collisions

ATOMIC PHYSICS Sm(p, X), E=4 MeV; measured E(L X-ray), I(L X-ray); deduced ionization probabilities impact parameter dependence, alignment tensor components. Si-Li detectors. SCA calculations.

doi: 10.1007/BF01436634
Citations: PlumX Metrics


1985SC01      Z.Phys. A320, 185 (1985)

R.Schuch, H.Schmidt-Bocking, I.Tserruya, B.M.Johnson, K.W.Jones, M.Meron

X-Ray Spectroscopy of Cl-Ar Quasi-Molecular Orbitals from 1sσ-2pπ Transitions

ATOMIC PHYSICS Ar(Cl, X), E=2.5, 5, 10, 20 MeV; measured quasimolecular X-ray spectra; deduced quasimolecular transition energy vs internuclear distance.

doi: 10.1007/BF01881266
Citations: PlumX Metrics


1984ST22      Z.Phys. A319, 239 (1984)

K.E.Stiebing, H.Schmidt-Bocking, W.Schadt, K.Bethge, R.Schuch, P.H.Mokler, F.Bosch, D.Liesen, S.Hagmann, P.Vincent

The Impact Parameter Dependence of the K MO X-Ray Emission in 208Pb + 208Pb Collisions. 1sσ- and 2p1/2σ-Excitation Probabilities in Symmetric, Superheavy Collision Molecules

ATOMIC PHYSICS 208Pb(208Pb, X), E=4.3, 4.8 MeV/nucleon; measured quasimolecular K X-ray emission probabilities; deduced impact parameter dependences. Particle-photon coincidence technique.

doi: 10.1007/BF01412536
Citations: PlumX Metrics


1982SC04      Nucl.Instrum.Methods 192, 71 (1982)

H.Schmidt-Bocking, K.E.Stiebing, W.Schadt, N.Lochter, G.Gruber, S.Kelbch, K.Bethge, R.Schuch, I.Tserruya

Trajectory, Binding and Relativistic Effects in the K-Shell Ionization Process Investigated by Particle-Photon Coincidences

ATOMIC PHYSICS Ag(p, X), (d, X), E=0.9 MeV/nucleon; Ni(p, X), (d, X), E=0.6 MeV/nucleon; Ni(20Ne, X), E=18 MeV; Pb(Cl, X), E=86.9, 135.6 MeV; measured K-shell ionization probabilities, ratios; deduced projectile trajectory, charge, binding energy, relativistic effects. Particle-photon coincidence. First order perturbation theory.


1980LI06      Phys.Rev.Lett. 44, 983 (1980)

D.Liesen, P.Armbruster, F.Bosch, S.Hagmann, P.H.Mokler, H.J.Wollersheim, H.Schmidt-Bocking, R.Schuch, J.B.Wilhelmy

Experimental Confirmation of a Scaling Law for the 1sσ Excitation Probability for Z1 + Z2 > 120, and its Breakdown in Pb + Cm Collisions At Very Small Internuclear Distances

ATOMIC PHYSICS Au(Xe, X), E=3.6-6.8 MeV/nucleon; Cm(Pb, X), E=3.6-5.9 MeV/nucleon; measured (particle)(X-ray)-coin. Au, Cm deduced 1sσ excitation probability. Scaling law fit to all available data.

doi: 10.1103/PhysRevLett.44.983
Citations: PlumX Metrics


1976KO11      Nucl.Phys. A262, 113 (1976)

W.Kohler, H.Schmidt-Bocking, K.Bethge

Investigation of 15N by the Reactions 11B(7Li, t)15N and 10B(7Li, d)15N

NUCLEAR REACTIONS 11B(7Li, t), 10B(7Li, d), E=24 MeV; measured σ(θ). 15N deduced levels, J. Enriched target, FRDWBA analysis.

doi: 10.1016/0375-9474(76)90443-7
Citations: PlumX Metrics


1975DI08      Nucl.Phys. A250, 322 (1975)

G.Dietl, G.Gruber, H.Schmidt-Bocking, K.Bethge

Elastic Scattering of 10B on 10B in the Energy Range from 4 to 15 MeV

NUCLEAR REACTIONS 10B(10B, 10B), E=4-15 MeV; measured σ(E), σ(θ). Enriched target, optical model analysis.

doi: 10.1016/0375-9474(75)90262-6
Citations: PlumX Metrics


1972WE08      Nucl.Phys. A186, 145 (1972)

K.A.Weber, K.Meier-Ewert, H.Schmidt-Bocking, K.Bethge

Elastic Scattering of 7Li from Light Target Nuclei

NUCLEAR REACTIONS 9Be, 10B, 12C(7Li, 7Li), E=15, 21, 24 MeV; measured σ(θ); deduced optical model parameters, enriched, natural targets.

doi: 10.1016/0375-9474(72)90130-3
Citations: PlumX Metrics


1971SC21      Z.Phys. 246, 431 (1971)

H.Schmidt-Bocking, G.Brommundt, K.Bethge

Investigation of the Level Structure of 17O

NUCLEAR REACTIONS 12C(7Li, d), 13C(7Li, t), E=13.3 MeV cms; measured σ(θ). 17O deduced levels, J, π.


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