Title of article :
Damping of multiphonon giant resonances Original Research Article
Author/Authors :
Nguyen Dinh Dang، نويسنده , , Kosai Tanabe، نويسنده , , Akito Arima، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2000
Pages :
28
From page :
531
To page :
558
Abstract :
The phonon damping model (PDM) is applied to derive the equations that describe the damping of three-, and n -phonon giant resonances. As examples of the application of this approach, the results of numerical calculations for the double giant resonance (DGDR) (n=2) and triple giant dipole resonance (TGDR) (n=3) in 90 Zr, 120 Sn and 208 Pb are discussed and compared with those obtained by folding independent giant dipole resonances (GDRs) (the folding results). For the DGDR in the double magic nucleus 208 Pb, we found that these results are very close to the folding results. In the open-shell nuclei 90 Zr and 120 Sn, a clear deviation from the folding results is observed in calculations in agreement with the experimental trend. The results for the integrated strength and energy of TGDR are found to be much closer to the folding results in all three nuclei. The TGDR widths in the open shell nuclei are found to be larger than the folding results. We also show that the relationship View the MathML source , which connects the energy-weighted sum (EWS) View the MathML source of the DGDR strengths to the EWS View the MathML source and the non-energy-weighted sum of strengths (NEWS) View the MathML source of GDR, does not hold in any approximation in which the energy of the two-phonon state is deviated from the sum of energies of the two one-phonon states due to anharmonicity. A small deviation of the two-phonon energy is enough to cause a noticeable change in the DGDR strength compared to the independent-phonon picture. A new sum rule relationship is derived within the PDM.
Keywords :
Multiphonon giant resonance , Strength function , Anharmonicity , Energy-weighted sum rule
Journal title :
Nuclear physics A
Serial Year :
2000
Journal title :
Nuclear physics A
Record number :
1192142
Link To Document :
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