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Recent Advances in the Microscopic Calculations of Level Densities by the Shell Model Monte Carlo Method

机译:壳模型蒙特卡洛方法在微观计算液位密度方面的最新进展

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摘要

The shell model Monte Carlo (SMMC) method enables calculations in model spaces that are many orders of magnitude larger than those that can be treated by conventional methods, and is particularly suitable for the calculation of level densities in the presence of correlations. We review recent advances and applications of SMMC for the microscopic calculation of level densities. Recent developments include (i) a method to calculate accurately the ground-state energy of an odd-mass nucleus, circumventing a sign problem that originates in the projection on an odd number of particles, and (ii) a method to calculate directly level densities, which, unlike state densities, do not include the spin degeneracy of the levels. We calculated the level densities of a family of nickel isotopes 59?64Ni and of a heavy deformed rare-earth nucleus 162Dy and found them to be in close agreement with various experimental data sets.
机译:壳模型蒙特卡洛(SMMC)方法可以在比常规方法可以处理的模型空间大许多数量级的模型空间中进行计算,并且特别适合在存在相关性的情况下计算密度。我们回顾了SMMC在液位密度的微观计算中的最新进展和应用。最新发展包括:(i)精确计算奇质量核的基态能量的方法,规避源自奇数个粒子投影的符号问题,以及(ii)直接计算水平密度的方法与状态密度不同,它不包括级别的自旋简并性。我们计算了镍同位素59?64Ni族和重度变形的稀土核162Dy的能级密度,发现它们与各种实验数据集非常吻合。

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