THE TRANSPORT THEORY OF A COUPLING SYSTEM SIMULTANEOUSLY INVOLVING THE RELATIVE MOTION COLLECTIVE OSCILLATIONS AND SINGLE PARTICLE EXCITATIONS

  • In this paper, by using the time dependent projection operater method, the coup-ling equations of the relative motion, in classical limit, collective osillations and singleparticle excitions have been derived. These theorelical formulations are expected to be useful for the descriptions of thetransport process for the inelastic collision between heavy ions as well as nuclear fission.
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  • [1] D. Agassi, C. M. Ko, H.A.Weidenmiiler, Ann. of Phys.107 (1977), 140.[2] W. Norenbera, J, de Phys., C5(1976).[3] H. Iioffman, P. J. Siemene, Nucl. Phys., A257 (1976), 165; A275 (1977), 464.[4] R. A. Broglia, C. M.Dusao, A. Winther, Phys. Lett., 53B(1974), 301; 61B (1976),113;73B(1978),405.[5] C. M. Ko, Z. Phys., A286 (1978), 405.[6] S. Takigawa, Nucl. Phys., A315 (1979), 186.[7] 卓益忠、吴锡真,高能物理与核物理,3(1979),501.[8] 张竞上、卓益忠、顾英沂,原子核物理,2(1980),1,
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Zhuo Yi-zhong, Zhang Jing-Shang, Wu Xi-zhen and Ma Zhong-yu. THE TRANSPORT THEORY OF A COUPLING SYSTEM SIMULTANEOUSLY INVOLVING THE RELATIVE MOTION COLLECTIVE OSCILLATIONS AND SINGLE PARTICLE EXCITATIONS[J]. Chinese Physics C, 1980, 4(5): 675-679.
Zhuo Yi-zhong, Zhang Jing-Shang, Wu Xi-zhen and Ma Zhong-yu. THE TRANSPORT THEORY OF A COUPLING SYSTEM SIMULTANEOUSLY INVOLVING THE RELATIVE MOTION COLLECTIVE OSCILLATIONS AND SINGLE PARTICLE EXCITATIONS[J]. Chinese Physics C, 1980, 4(5): 675-679. shu
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Received: 1979-07-20
Revised: 1900-01-01
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THE TRANSPORT THEORY OF A COUPLING SYSTEM SIMULTANEOUSLY INVOLVING THE RELATIVE MOTION COLLECTIVE OSCILLATIONS AND SINGLE PARTICLE EXCITATIONS

Abstract: In this paper, by using the time dependent projection operater method, the coup-ling equations of the relative motion, in classical limit, collective osillations and singleparticle excitions have been derived. These theorelical formulations are expected to be useful for the descriptions of thetransport process for the inelastic collision between heavy ions as well as nuclear fission.

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