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首页> 外文期刊>International Journal of Modern Physics, C. Physics and Computers >OPTIMIZATION OF QUANTUM MONTE CARLO WAVE FUNCTION: STEEPEST DESCENT METHOD
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OPTIMIZATION OF QUANTUM MONTE CARLO WAVE FUNCTION: STEEPEST DESCENT METHOD

机译:量子蒙特卡罗波函数的最优化:最陡下降法

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We have employed the steepest descent method to optimize the variational groundstate quantum Monte Carlo wave function for He, Li, Be, B and C atoms. We have used both the direct energy minimization and the variance minimization approaches. Our calculations show that in spite of receiving insucient attention, the steepest descent method can successfully minimize the wave function. All the derivatives of the trial wave function respect to spatial coordinates and variational parameters have been computed analytically. Our groundstate energies are in a very good agreement with those obtained with diusion quantum Monte Carlo method (DMC) and the exact results.
机译:我们采用最速下降法来优化He,Li,Be,B和C原子的变化基态量子蒙特卡罗波函数。我们已经使用了直接能量最小化和方差最小化方法。我们的计算表明,尽管受到不足的关注,但最陡下降法仍可以成功地最小化波动函数。试验波函数关于空间坐标和变化参数的所有导数都已经过分析计算。我们的基态能量与使用扩散量子蒙特卡罗方法(DMC)获得的能量和精确结果非常吻合。

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