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首页> 外文期刊>The Journal of Chemical Physics >Optimized Jastrow-Slater wave functions for ground and excited states:Application to the lowest states of ethene
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Optimized Jastrow-Slater wave functions for ground and excited states:Application to the lowest states of ethene

机译:针对基态和激发态优化的Jastrow-Slater波函数:应用于乙烯的最低态

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摘要

A quantum Monte Carlo method is presented for determining multideterminantal Jastrow-Slater wave functions for which the energy is stationary with respect to the simultaneous optimization of orbitals and configuration interaction coefficients.The approach is within the framework of the so-called energy fluctuation potential method which minimizes the energy in an iterative fashion based on Monte Carlo sampling and a fitting of the local energy fluctuations.The optimization of the orbitals is combined with the optimization of the configuration interaction coefficients through the use of additional single excitations to a set of external orbitals.A new set of orbitals is then obtained from the natural orbitals of this enlarged configuration interaction expansion.For excited states,the approach is extended to treat the average of several states within the same irreducible representation of the pointgroup of the molecule.The relationship of Our optimization method with the stochastic reconfiguration technique by Sorella et al.is examined.Finally,the performance of our approach is illustrated with the lowest states of ethene,in particular with the difficult case of the 1 ~1B_(1u) state.
机译:提出了一种量子蒙特卡罗方法,用于确定同时确定轨道和构型相互作用系数的能量是稳定的多行定Jastrow-Slater波函数,该方法处于所谓的能量波动势方法的框架内,该方法通过蒙特卡洛采样和局部能量波动的拟合,以迭代的方式将能量最小化。通过对一组外部轨道使用附加的单次激发,将轨道的优化与配置相互作用系数的优化结合在一起。然后,从这种扩大的构型相互作用展开的自然轨道中获得了一组新的轨道。对于激发态,该方法被扩展为处理分子的点组的相同不可约表示内多个态的平均值。随机侦察的优化方法最后,以乙烯的最低状态,特别是在1〜1B_(1u)状态的困难情况下,说明了我们方法的性能。

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