Author:
Abrosimov V. I.,Davydovska O. I.
Abstract
The isoscalar dipole nuclear response reveals low- and high-energy resonances. The nature of isoscalar dipole resonances in heavy spherical nuclei is studied, by using a translation-invariant kinetic model of small oscillations of finite Fermi systems. Calculations of the velocity field at the centroid energy show a pure vortex character of the low-energy isoscalar dipole resonance in spherical nuclei and confirm the anisotropic compression character of the high-energy one. The evolution of the velocity field as a function of the excitation energy of the nucleus within the resonance width is studied. It is found that the low-energy isoscalar dipole resonance retains a vortex character, while with this collective excitation also involves a compression, as the energy increases. The high-energy resonance keeps the compression character with a change in the excitation energy within the resonance width, but the compression-expansion region of the velocity field related to this resonance shifts inside the nucleus.
Publisher
National Academy of Sciences of Ukraine (Co. LTD Ukrinformnauka)
Subject
General Physics and Astronomy
Reference26 articles.
1. Isoscalar giant dipole resonance in 90Zr, 116Sn, and 208Pb. it;Clark;Phys Rev C Nucl Phys,2001
2. Isoscalar E0−E3 strength in 116Sn, 144Sm, 154Sm, and 208Pb.;Youngblood;Phys Rev C Nucl Phys,2004
3. Isoscalar giant dipole resonance in Pb-208 via inelastic alpha scattering at 400 MeV and nuclear incompressibility.;Uchida;Phys Lett B,2003
4. M. Uchida, H. Sakaguchi, M. Itoh, M. Yosoi, T. Kawabata, Y. Yasuda, H. Takeda, T. Murakami, S. Terashima, S. Kishi, U. Garg, P. Boutachkov, M. Hedden, B. Kharraja, M. Koss, B.K. Nayak, S. Zhu, M. Fujiwara, H. Fujimura, H. P. Yoshida, K. Hara, H. Akimune, M.N. Harakeh. Systematics of the bimodal isoscalar giant dipole resonance. Phys. Rev. C 69, 051301(R). (2004).
5. Monopole and dipole compression modes in nuclei.;Van Giai;Nucl Phys A,1981
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