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High Precision Method for Calculating the Energy Values of the Hydrogen Atom in a Strong Magnetic Field

机译:高精度方法,用于计算强磁场中氢原子的能量值

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The new method for calculating the energy values of the hydrogen atom in a strong magnetic field (0 ≤ B ≤ 10~(13)G) with high degree of accuracy is developed in this paper. The proposed method is based on the Kantorovich method for solving eigenvalue problems. This method successfully reduces the given two dimensional spectral problem for the Schroedinger equation to the spectral problems for one one-dimensional equation and the system of ordinary second-order differential equations. The rate of convergence is examined numerically and is illustrated in the table. The results are in good agreement with the best one up to now and show that 12 significant digits are computed in the obtaining energy values.
机译:本文开发了具有高精度的强磁场中氢原子的能量值的新方法,具有高精度的高精度。所提出的方法基于求解特征值问题的Kantorovich方法。该方法成功将Schroedinger方程的给定二维光谱问题减少到一个一维方程的光谱问题和普通二阶微分方程的系统。数值上检查会聚速率并在表中示出。结果与现在最好的结果吻合良好,并表明在获取能量值中计算12个有效数字。

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