SEMI-MICROSCOPIC OPTICAL POTENTIAL CALCULATION BY THE NUCLEAR MATTER APPROACH——I. SYMMETRIC NUCLEAR MATTER

  • In this paper semi-microscopic nuclear matter approach is introduced to calculatethe microscopic optical potential. The first and second order mass operator in sym-metric nuclear matter is derived with Skyrme effective interactions and the real andimaginary part of the optical potential for finite nuclei is obtained by applying alocal density approximation. The five kinds of the different parameters of Skyrmeinteractions Ⅱ-Ⅵ are used and compared with the experimental data to study how wellthese Skyrme interactions can work for our purposes. Our results obtained in such asimple way seem to be to some extent comparable with those obtained with "nuclearmatter approach" and "nuclear structure approach" without adjusting the parame-ters of the Skyrme interactions so far.
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  • [1] J. S. Bell and E. J. Squires. Phys. Rev. Lett., 3(1959). 96.[2] J. P. Jeukenne, A. Lejeune and C. Mahaus, Phys. Reports, 25C(1976), 83.[3] C.Microscopic Optical Potentials, Lecture Notes in Physics, vol. 89, p. 1 (Springcr-Yerlag Berlin1979).[4] F.A. Brieva and d. R. Rook, Nucl.. Phys., A291(1977), 299, 317.[5] N.Yinh Mau and A. Bouysey, Nucl. Phys., A257(1978), 189.[6] V. Bernard and Nguyen Van Giai, Nucl. Phys., A327(1979), 397; Nucl, Phys., A348(1980), 75.[7] A. Lejeune and P. E. Hodgaon, Nucl. Phys., A295(1978), 301.[8] F. A. Brieva and J. R. Rook, Nucl. Phys., A307(1978), 493.[9] D. Yautherin and D. M. Brink, Phys. Rev., C5(1972) 626.[10] M. Beiner, H. Flocard, Nguyen Van Giai and P. Quentin, Nucl. Phys., A238(1975), 29.[11] S. Krewald, V. Klemt, J. Speth and A. Faessler, Nucl. Phys., A2B1 (1977), 168.[12] J. W. Negele and D. Vautherin, Phys. Rev., C5(1972), 1472.[13] J. W. Negele, Phys. Rev., Cl(1970), 2280.[14] J.-P. Jeukenne, A. Lejeune and C. Mahauz, Phys. Rev., C16(1977), 80[15] F. D. Beeehetti and G. W. Greenlees, Phys. Rev., 182(1969), 1190.[16] S. Kailae and s. H. Gupta, Phys. Rev., C17(1978), 2286.[17] S. Kailas and S.K.Gupta, Phys. Letters, 71B(1977), 271.[18] H. V. Von Geramb, F. A. Brieva and J. R. Rook. Micioscopie Optical Potentials, Lecture Notea in Phyaica, Vol. 89, p. 104 (8pringer-Verlag Berlin 1979).[19] J. C. Ferrer et al., Nucl Phys., A275 (1977), 325.[20] W. J. Medonald et al., Nucl. Phys., 59 (1964), 321
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ZHANG JING-SHANG, TIAN YE and ZHUO YI-ZHONG. SEMI-MICROSCOPIC OPTICAL POTENTIAL CALCULATION BY THE NUCLEAR MATTER APPROACH——I. SYMMETRIC NUCLEAR MATTER[J]. Chinese Physics C, 1982, 6(1): 91-103.
ZHANG JING-SHANG, TIAN YE and ZHUO YI-ZHONG. SEMI-MICROSCOPIC OPTICAL POTENTIAL CALCULATION BY THE NUCLEAR MATTER APPROACH——I. SYMMETRIC NUCLEAR MATTER[J]. Chinese Physics C, 1982, 6(1): 91-103. shu
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Received: 1981-05-03
Revised: 1900-01-01
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SEMI-MICROSCOPIC OPTICAL POTENTIAL CALCULATION BY THE NUCLEAR MATTER APPROACH——I. SYMMETRIC NUCLEAR MATTER

Abstract: In this paper semi-microscopic nuclear matter approach is introduced to calculatethe microscopic optical potential. The first and second order mass operator in sym-metric nuclear matter is derived with Skyrme effective interactions and the real andimaginary part of the optical potential for finite nuclei is obtained by applying alocal density approximation. The five kinds of the different parameters of Skyrmeinteractions Ⅱ-Ⅵ are used and compared with the experimental data to study how wellthese Skyrme interactions can work for our purposes. Our results obtained in such asimple way seem to be to some extent comparable with those obtained with "nuclearmatter approach" and "nuclear structure approach" without adjusting the parame-ters of the Skyrme interactions so far.

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