Published June 1996
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Quenching of 1+ excitations in the double giant resonance
Description
The electromagnetic excitation of the two-photon isovector giant dipole resonance in relativistic projectiles incident on heavy targets can be proceed via several intermediate 1- one-phonon giant resonance states. In two step electric dipole transitions the population of 0+, 1+, and 2+ two-phonon states are possible. We calculate the amplitude distribution of 1- excitations with an RPA formalism, and use it to calculate the electromagnetic excitation of two-phonon states in second order perturbation theory and coupled-channels. We show that a conspiracy between angular momentum coupling and the strength of the electromagnetic fields suppresses contributions of 1+ state to the total cross sections. (orig.)
Availability note (English)
MF available from INIS under the Report Number.
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Additional details
Publishing Information
- Imprint Pagination
- 14 p.
- Report number
- GSI--96-25(prepr.)
INIS
- Country of Publication
- Germany
- Country of Input or Organization
- Germany
- INIS RN
- 27073519
- Subject category
- S73: NUCLEAR PHYSICS AND RADIATION PHYSICS; S73: NUCLEAR PHYSICS AND RADIATION PHYSICS; S73: NUCLEAR PHYSICS AND RADIATION PHYSICS;
- Resource subtype / Literary indicator
- Numerical Data
- Descriptors DEI
- COUPLED CHANNEL THEORY; ENERGY SPECTRA; E1-TRANSITIONS; GEV RANGE 100-1000; GIANT RESONANCE; INTEGRAL CROSS SECTIONS; INTERMEDIATE RESONANCE; LEAD 208; LEAD 208 REACTIONS; LEAD 208 TARGET; NUCLEAR STRUCTURE; PERTURBATION THEORY; PHONONS; QUASI-ELASTIC SCATTERING; RANDOM PHASE APPROXIMATION; RELATIVISTIC RANGE; ROTATIONAL STATES; STRENGTH FUNCTIONS; THEORETICAL DATA; TRANSITION AMPLITUDES
- Descriptors DEC
- AMPLITUDES; CROSS SECTIONS; DATA; ENERGY LEVELS; ENERGY RANGE; ENERGY-LEVEL TRANSITIONS; EVEN-EVEN NUCLEI; EXCITED STATES; FUNCTIONS; GEV RANGE; HEAVY ION REACTIONS; HEAVY NUCLEI; INFORMATION; ISOTOPES; LEAD ISOTOPES; MULTIPOLE TRANSITIONS; NUCLEAR REACTIONS; NUCLEI; NUMERICAL DATA; QUASI PARTICLES; RESONANCE; SCATTERING; SPECTRA; STABLE ISOTOPES; TARGETS