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NSR database version of April 11, 2024.

Search: Author = H.F.Krause

Found 9 matches.

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2012AN03      Phys.Rev. C 85, 044609 (2012)

J.U.Andersen, J.Chevallier, J.S.Forster, S.A.Karamian, C.R.Vane, J.R.Beene, C.J.Gross, H.F.Krause, J.F.Liang, D.Shapira, A.Uguzzoni

Time delays in heavy-ion-induced fission of medium-Z nuclei, measured by crystal blocking

NUCLEAR REACTIONS Mo(32S, X), E=170, 180 MeV; Mo(48Ti, X), E=225, 240 MeV; Mo(58Ni, X), E=300 MeV; W, Mo(74Ge, X), E=400, 450 MeV; measured spectra of elastically scattered ions and fission fragments, energy loss, blocking lifetimes, blocking dips from elastic scattering at HRIBF facility, fission energy distribution, fission blocking dips, time delays in fission by crystal blocking of fission fragments. Comparison with continuum-model and statistical model calculations.

doi: 10.1103/PhysRevC.85.044609
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2008AN14      Phys.Rev. C 78, 064609 (2008)

J.U.Andersen, J.Chevallier, J.S.Forster, S.A.Karamian, C.R.Vane, J.R.Beene, A.Galindo-Uribarri, J.Gomez del Campo, C.J.Gross, H.F.Krause, E.Padilla-Rodal, D.Radford, D.Shapira, C.Broude, F.Malaguti, A.Uguzzoni

Attosecond time delays in heavy-ion induced fission measured by crystal blocking

NUCLEAR REACTIONS W(32S, 32S), (32S, X), E=180 MeV; W(48Ti, 48Ti), (48Ti, X), E=240-255 MeV; W(58Ni, 58Ni), (58Ni, 58Ni'), (58Ni, X), E=330-375 MeV; W(74Ge, 74Ge), (74Ge, X), E=390 MeV; measured fission energy spectra, σ; calculated blocking dips. Continuum model calculations.

doi: 10.1103/PhysRevC.78.064609
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2007AN29      Phys.Rev.Lett. 99, 162502 (2007)

J.U.Andersen, J.Chevallier, J.S.Forster, S.A.Karamian, C.R.Vane, J.R.Beene, A.Galindo-Uribarri, J.Gomez del Campo, H.F.Krause, E.Padilla-Rodal, D.Radford, C.Broude, F.Malaguti, A.Uguzzoni

Crystal Blocking Measurements of the Time Delay of Fission Induced by 32S, 48Ti, and 58Ni Bombardment of W

NUCLEAR REACTIONS W(32S, F), E=180 MeV; W(48Ti, F), E=240-255 MeV; W(58Ni, F), E=315-375 MeV; measured fission yields. Deduced fission delay.

doi: 10.1103/PhysRevLett.99.162502
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2004SC28      Phys.Rev. C 70, 014902 (2004)

C.Scheidenberger, I.A.Pshenichnov, K.Summerer, A.Ventura, J.P.Bondorf, A.S.Botvina, I.N.Mishustin, D.Boutin, S.Datz, H.Geissel, P.Grafstrom, H.Knudsen, H.F.Krause, B.Lommel, S.P.Moller, G.Munzenberg, R.H.Schuch, E.Uggerhoj, U.Uggerhoj, C.R.Vane, Z.Z.Vilakazi, H.Weick

Charge-changing interactions of ultrarelativistic Pb nuclei

NUCLEAR REACTIONS H, C, Al, Cu, Sn, Au(208Pb, X), E=158 GeV/nucleon; measured charge-changing σ; deduced reaction mechanism features. Abrasion-ablation model and relativistic electromagnetic dissociation model analysis.

doi: 10.1103/PhysRevC.70.014902
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetD0810.


2002SC01      Phys.Rev.Lett. 88, 042301 (2002)

C.Scheidenberger, I.A.Pshenichnov, T.Aumann, S.Datz, K.Summerer, J.P.Bondorf, D.Boutin, H.Geissel, P.Grafstrom, H.Knudsen, H.F.Krause, B.Lommel, S.P.Moller, G.Munzenberg, R.H.Schuch, E.Uggerhoj, U.Uggerhoj, C.R.Vane, A.Ventura, Z.Z.Vilakazi, H.Weick

Electromagnetically Induced Nuclear-Charge Pickup Observed in Ultrarelativistic Pb Collisions

NUCLEAR REACTIONS H, C, 27Al, Cu, Sn, 197Au, Pb(208Pb, X), E=158 GeV/nucleon; measured charge-pickup σ; deduced role of electromagnetic processes. Comparison with previous results.

doi: 10.1103/PhysRevLett.88.042301
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1997DA18      Phys.Rev.Lett. 79, 3355 (1997)

S.Datz, J.R.Beene, P.Grafstrom, H.Knudsen, H.F.Krause, R.H.Schuch, C.R.Vane

Anomalies in the Nuclear Dissociation Cross Sections of 208Pb at 33 TeV

NUCLEAR REACTIONS C, Si, Cu, Sn, Pb(208Pb, X), E=33 TeV; measured total disintegration σ; deduced correction term proportional to target Z.

doi: 10.1103/PhysRevLett.79.3355
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1987AN10      Phys.Rev. A36, 3699 (1987)

M.C.Andrews, F.D.McDaniel, J.L.Duggan, P.D.Miller, P.L.Pepmiller, H.F.Krause, T.M.Rosseel, L.A.Rayburn, R.Mehta, G.Lapicki

L- and M-Shell X-ray Production Cross Sections of Nd, Gd, Ho, Yb, Au, and Pb by 25-MeV Carbon and 32-MeV Oxygen Ions

ATOMIC PHYSICS Nd, Gd, Ho, Yb, Au, Pb(12C, X), E=25 MeV; measured L X-ray, M X-ray production σ.

doi: 10.1103/PhysRevA.36.3699
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1987BR13      Phys.Rev. A35, 4114 (1987)

R.Bruch, N.Stolterfoht, S.Datz, P.D.Miller, P.L.Pepmiller, Y.Yamazaki, H.F.Krause, J.K.Swenson, K.T.Chung, B.F.Davis

High-Resolution KLL Auger Spectra of Multiply Ionized Oxygen Projectiles Studied by Zero-Degree Electron Spectroscopy

ATOMIC PHYSICS He(O, X), E=10 MeV; measured K electron Auger spectra. Zero-degree spectroscopy method, multiply ionized projectiles. Theoretical calculations.

doi: 10.1103/PhysRevA.35.4114
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1986RO14      Nucl.Instrum.Methods Phys.Res. A242, 632 (1986)

T.M.Rosseel, J.M.Dale, L.D.Hulett, H.F.Krause, P.L.Pepmiller, S.Raman, C.R.Vane, J.P.Young

Chemical Effects on the L Heavy-Ion-Induced X-Ray Satellite Emission (HIXSE) Spectra of Niobium Alloys and Compounds

NUCLEAR REACTIONS Nb(35Cl, X), E=36 MeV; measured L X-ray satellite spectra; deduced chemical effects role. High resolution Bragg spectrometer.

doi: 10.1016/0168-9002(86)90479-1
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