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Integration of Ab Initio Nuclear Physics Calculations with Optimization Techniques

机译:从头算核物理计算与优化技术的集成

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Optimization techniques are finding their inroads into the field of nuclear physics calculations where the objective functions are very complex and computationally intensive. A vast space of parameters needs searching to obtain a good match between theoretical (computed) and experimental observables, such as energy levels and spectra. In this paper, we propose a design integrating the ab initio nuclear physics code MFDn and the VTDIRECT95 code for derivative-free optimization. We experiment with the initial implementation of the design showing good matches for several single-nucleus cases. For the parallel MFDn code, we determine appropriate processor numbers to execute efficiently a multiple-nuclei parameter search.
机译:优化技术正在进入核物理计算领域,在这些领域中,目标函数非常复杂且计算量很大。需要搜索大量参数,以在理论(计算的)和实验可观测值(例如能级和光谱)之间获得良好的匹配。在本文中,我们提出了一种设计,该设计集成了从头开始的核物理代码MFDn和VTDIRECT95代码,以实现无导数优化。我们对设计的初始实现进行了试验,显示出了几种单核情况的良好匹配。对于并行MFDn代码,我们确定适当的处理器编号以有效执行多核参数搜索。

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