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首页> 外文期刊>Journal of Physics, G. Nuclear and Particle Physics: An Institute of Physics Journal >The long journey from ab initio calculations to density functional theory for nuclear large amplitude collective motion
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The long journey from ab initio calculations to density functional theory for nuclear large amplitude collective motion

机译:从头算到核大振幅集体运动的密度泛函理论的漫长旅程

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摘要

At present there are two vastly different ab initio approaches to the description of the many-body dynamics: the density functional theory (DFT) and the functional integral (path integral) approaches. On one hand, if implemented exactly, the DFT approach can allow in principle the exact evaluation of arbitrary one-body densities. However, when applied to large amplitude collective motion (LACM), this approach needs to be extended in order to accommodate the phenomenon of surface-hopping, when adiabaticity is strongly violated and the description of a system using a single (generalized) Slater determinant is not valid anymore. The functional integral approach on the other hand does not appear to have such restrictions, but its implementation does not appear to be a straightforward endeavor. However, within a functional integral approach one seems to be able to evaluate in principle any kind of observable, such as the fragment mass and energy distributions in nuclear fission. These two radically different approaches can likely be brought together by formulating a stochastic time-dependent DFT approach to many-body dynamics.
机译:目前,有两种完全不同的从头开始的方法来描述多体动力学:密度泛函理论(DFT)和泛函积分(路径积分)方法。一方面,如果实施得当,DFT方法原则上可以允许任意主体密度的精确评估。但是,当将其应用于大振幅集体运动(LACM)时,需要扩展此方法,以适应严重违反绝热性并且使用单个(广义)Slater行列式的系统的描述时出现的表面跳变现象。不再有效。另一方面,功能集成方法似乎没有这种限制,但是其实现似乎并不是一项直接的工作。但是,在功能积分方法中,人们似乎原则上可以评估任何可观测的形式,例如核裂变中的碎片质量和能量分布。这两种根本不同的方法可能可以通过对多体动力学制定随机的,与时间有关的DFT方法来实现。

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