A variance-based optimization for determining ground and excited N-electron wave functions within the doubly occupied configuration interaction scheme.

D. R. Alcoba, O. Oña, A. Torre, L. Lain, Guadalupe Sierra, G. Massaccesi
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Abstract

This work describes optimizations of N-electron system wave functions by means of the simulated annealing technique within the doubly occupied configuration interaction framework. Using that technique, we minimize the energy variance of a Hamiltonian, providing determinations of wave functions corresponding to ground or excited states in an identical manner. The procedure that allows us to determine electronic spectra can be performed using treatments of restricted or unrestricted types. The results found in selected systems, described in terms of energy, spin, and wave function, are analyzed, showing the performance of each method. We also compare these results with those arising from more traditional approaches that minimize the energy, in both restricted and unrestricted versions, and with those obtained from the full configuration interaction treatment.
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在双占位构型相互作用方案中确定基态和激发态 N 电子波函数的基于方差的优化方法。
这项工作描述了在双占位构型相互作用框架内,通过模拟退火技术对 N 电子系统波函数的优化。利用该技术,我们可以最小化哈密顿的能量方差,以相同的方式确定基态或激发态对应的波函数。我们可以使用受限或非受限类型的处理方法来确定电子能谱。我们分析了在选定系统中发现的以能量、自旋和波函数描述的结果,展示了每种方法的性能。我们还将这些结果与通过限制型和非限制型能量最小化的传统方法得出的结果进行了比较,并与通过完全构型相互作用处理方法得出的结果进行了比较。
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