0000000000976944

AUTHOR

J. P. Schiffer

showing 3 related works from this author

Proton Inelastic Scattering onNi56in Inverse Kinematics

1994

Inelastic proton scattering to the first excited ${2}^{+}$ state of the doubly magic $^{56}\mathrm{Ni}$ nucleus was investigated in inverse kinematics, using a secondary beam of radioactive $^{56}\mathrm{Ni}$ nuclei. At an incident energy of 101 MeV/nucleon, a value $B(E2,{0}^{+}\ensuremath{\rightarrow}{2}^{+})=600\ifmmode\pm\else\textpm\fi{}120 {e}^{2}$ ${\mathrm{fm}}^{4}$ was measured. This result completes the set of experimental data for the first excited ${2}^{+}$ states in the $1f\ensuremath{-}2p$ shell with a closed shell of neutrons or protons. These data are compared to recent shell-model calculations.

PhysicsNuclear reactionProtonScatteringExcited stateNuclear TheoryGeneral Physics and AstronomyAtomic physicsMott scatteringInelastic scatteringNuclear ExperimentNucleonOpen shellPhysical Review Letters
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Investigation of the (d, p)-reaction on136, 132Xe in inverse kinematics

1991

The one-neutron transfer reactions d(132,136 Xe, p)133,137 Xe have been investigated in inverse kinematics with xenon beams incident on deuterium loaded titanium targets. The angular distributions of the protons, measured with a detector array of 100 PIN-photodiodes, have been analyzed using standard DWBA. Generally, good agreement is obtained with results previously obtained in reactions induced by light-ion beams.

PhysicsNuclear and High Energy PhysicsXenonDeuteriumchemistryInverse kinematicschemistry.chemical_elementNuclear fusionAtomic physicsDetector arrayNuclear ExperimentTitaniumZeitschrift f�r Physik A Hadrons and Nuclei
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First Exploration of Neutron Shell Structure below Lead and beyond N=126

2020

The nuclei below lead but with more than 126 neutrons are crucial to an understanding of the astrophysical r process in producing nuclei heavier than A∼190. Despite their importance, the structure and properties of these nuclei remain experimentally untested as they are difficult to produce in nuclear reactions with stable beams. In a first exploration of the shell structure of this region, neutron excitations in ^{207}Hg have been probed using the neutron-adding (d,p) reaction in inverse kinematics. The radioactive beam of ^{206}Hg was delivered to the new ISOLDE Solenoidal Spectrometer at an energy above the Coulomb barrier. The spectroscopy of ^{207}Hg marks a first step in improving our…

PhysicsNuclear reactionSpectrometerSolenoidal vector fieldNuclear TheoryGeneral Physics and AstronomyCoulomb barrier01 natural sciencesNuclear physicsLead (geology)0103 physical sciencesr-processPhysics::Accelerator PhysicsNeutron010306 general physicsSpectroscopyNuclear Experimentydinfysiikka
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