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近垒能量下重核熔合几率的量子路径积分计算
引用本文:包景东.近垒能量下重核熔合几率的量子路径积分计算[J].原子核物理评论,2006,23(4):413-417.
作者姓名:包景东
作者单位:北京师范大学物理系, 北京100875
基金项目:国家自然科学基金;高等学校博士学科点专项科研项目
摘    要:针对近垒能量下经典涨落耗散模型预期的重核熔合几率比实验结果偏小的问题, 发展了一种实时间路径积分方法并用于研究重核熔合激发函数, 给出了包含量子涨落效应的解析表达式。 计算了几个对称和近似对称反应系统的熔合几率, 结果表明理论结果与实验值符合较好。 还讨论了颈部增长对熔合障碍的影响。 A real time path integral approach is developed in order to work out a correct solution to a problem for the smaller result of the fusion probability of heavy nuclei based on the classical diffusion model at sub barrier energies. An analytical expression for the quantum fusion probability is proposed,which contains the quantum fluctuation effect. The fusion probabilities of several symmetrical and approximate symmetrical systems are calculated, the heoretical results are in agreement with the experimental data. The influence of the neck length and its fluctuation upon the fusion hindrance is discussed.

关 键 词:重离子熔合反应    熔合几率    路径积分    近垒    量子涨落
文章编号:1007-4627(2006)04-0409-05
收稿时间:2006-08-20
修稿时间:2006年8月20日

Quantum Path Integral Approach to Fusion Probability of Heavy Nuclei at Sub-barrier Energies
BAO Jing-dong.Quantum Path Integral Approach to Fusion Probability of Heavy Nuclei at Sub-barrier Energies[J].Nuclear Physics Review,2006,23(4):413-417.
Authors:BAO Jing-dong
Institution:Department of Physics, Beijing Normal University, Beijing 100875, China
Abstract:A real time path integral approach is developed in order to work out a correct solution to a problem for the smaller result of the fusion probability of heavy nuclei based on the classical diffusion model at sub-barrier energies.An analytical expression for the quantum fusion probability is proposed,which contains the quantum fluctuation effect.The fusion probabilities of several symmetrical and approximate symmetrical systems are calculated,the theoretical results are in agreement with the experimental data.The influence of the neck length and its fluctuation upon the fusion hindrance is discussed.
Keywords:heavy-ion fusion reaction  fusion probability  path integral  sub-barrier  quantum fluctuation
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