欢迎登录材料期刊网

材料期刊网

高级检索

简要介绍了国际上发展中的核科学和技术及其应用对微观核数据的需求和核数据理论计算中现有标准程序的基本情况, 并做了相应的分析和比对. 同时也简要介绍了国际上核数据理论计算中模型方法研究的新进展.

参考文献

[1] Leray S. Nuclear Data at High Energy: Experiment, theory and applications(SMR/1220-18)[C]. Workshop on Nuclear Reaction Data and Nuclear Reactors: Physics, Design and Safety, Trieste Italy, April 2000.
[2] Ignatyuk A V. Nuclear Data and Nuclear Models in 21st Century(SMR/1220-19)[C]. Workshop on Nuclear Reaction Data and Nuclear Reactors: Physics, Design and Safety, Trieste, Italy, April 2000.
[3] Larson N M. Resonance Parameter Analysis with SAMMY(SMR/1220-8)[C]. Workshop on Nuclar Reaction Data and Nuclear Reactors: Physics, Design and Safety, Trieste, Italy, April 2000.
[4] Herman M. Statistical Theory of Nuclear Reactions[C]. Proc of the Workshop on Nuclear Reaction Data and Nuclear Reactors: Physcs, Design and Safety, Feb-March 1998, In: Oblozinsky P, Gandini A. ed. Trieste, Italy.
[5] Carlson B V. The Optical Model and ECIS95(SMR/1220-4)[C]. Workshop on Nuclear Reaction Data and Nuclear Reactors: Physics, Design and Safety, Trieste, Italy, April 2000.
[6] Feshbach H, Kerman A, Koonin S. The Statistical Theory of Multi-step Compound and Direct Reactions[J]. Ann Phys (NY), 1980, 125: 429-476.
[7] Nishioka H, Weidenmuller H A, Yoshida S. Statistical Theory of Precompound Reactions: The multistep direct process[J]. Ann Phys (NY), 1988, 183: 166-187.
[8] Tamura T, Udagawa T, Lenske H. Multi-step Direct Reaction Analysis of Continuum Spectra in Reactions Induced by Light Ions[J]. Phys Rev C, 1982, 26: 379-404.
[9] Blann M. Importance of the Nuclear Density Distribution on Pre-equilibrium Decay[J]. Phys Rev Lett, 1972, 28: 757- 759.
[10] Arbanas G, Chadwick M B, Dietrich F S, et al. Linking of Direct and Compound Chains in Multistep Nuclear Reactions[J]. Phys Rev C, 1995, 51: 3R1 078-3R1 082.
[11] Koning A J, Chadwick M B. Microscopic Two-component Multistep Direct Theory for Continuum Nuclear Reactions[J]. Phys Rev C, 1997, 56: 2 970-2 994.
[12] Feshbach H. Energy Averaging and the Statistical Multistep Direct Process[J]. Ann Phys (NY), 1985, 159: 150-156.
[13] Agrawal B K, Samaddar S K, Ansari A, et al. Influence of Pairing Corelations on the Excitation Energy, Angular Momentum, and Parity Dependence of Nuclear Level Densities[J]. Phys Rev C, 1999, 59: 63 109-63 119.
[14] De J N, Shlomo S, Samaddar S K. Level Density Parameter in a Refined Thomas-Fermi Theory[J]. Phys Rev C, 1998, 57: 31 398-31 403.
[15] Hilaire S, Delaroche J P, Koning A J. Generalized Particle- hole State Densities within the Equidistant Spacing Model[J]. Nucl Phys A, 1998, 632: 417-441.
[16] Harangozo A, Stetcu I, Avrigeanu, et al. Particle-hole State Densities with Nonequidistant Single-particle Levels[J]. Phys Rev C, 1998, 58(1): 1 295-1 306.
[17] Soyeur M, Flocard H, Tamain B, et al. Nuclear Matter and Heavy Ion Collisions[M]. NATO ASI Series B Phys, Plenum Press, New York-London, 1989, 205.
[18] Bertini H W. Low-energy Intranuclear Cascade Calculation[J]. Phys Rev, 1963, 131: 1 801-1 821.
[19] Yariv Y, Fraenkel Z. Intranuclear Cascade Calculation of High Energy Heavy-ion Interactions[J]. Phys Rev C, 1979, 20(6): 2 227-2 243.
[20] Cugnon J, Volant C, Vuillier S. Improved Intranuclear Cascade Model for Nucleon-nucleus Interactions[J]. Nucl Pyhs A, 1997, 620: 475-509.
[21] Cugnon J. Proton-nucleus Interaction at High Energy[J]. Nucl Pyhs A, 1986, 462: 751-780.
[22] Cugnon J, Lemaire M C.Medium Effects in Pion Production[J]. Nucl Pyhs A, 1988, 489: 781-802.
[23] Pienknowski L, Bohlen H G, Cugnon J, et al. Hot Nuclei in Reactions Induced by 475 MeV, 2 GeV 1H and 2 GeV 3He[J]. Phys Lett B, 1994, 336: 147-151.
[24] 冯军, 沈文庆, 王建松. 放射性核束引起的奇异核反应研究[J]. 原子核物理评论, 1997, 14(1): 27-33.
[25] 陈奋策, 陈宝秋.质子晕研究的新进展[J]. 原子核物理评论, 2000, 17(2): 82-86.
[26] 张焕乔. 超重核合成的新进展[J]. 原子核物理评论, 1999, 16(3): 192-196.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%