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首页> 外文期刊>EPJ Web of Conferences >Two-Parameter Harmonic Oscillator Expansion Method for Calculating Non-Relativistic Ground State Energy of Coulomb Three-Particle Systems with Two Identical Particles
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Two-Parameter Harmonic Oscillator Expansion Method for Calculating Non-Relativistic Ground State Energy of Coulomb Three-Particle Systems with Two Identical Particles

机译:计算具有两个相同粒子的库仑三粒子系统非相对论基态能量的双参数谐振子展开方法

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The variational method in oscillator representation with individual parameters for each Jacobi coordinate is applied to the non-relativistic calculation of the ground state energy of a number of three-particle Coulomb systems, consisting of two identical particles and a different one. The accuracy and convergence rate of the calculations in the constructed oscillator basis are studied up to a total of 28 oscillator quanta. The results are compared with those of the traditional approach using only one such nonlinear variational parameter. The method with individual parameters for Jacobi coordinates is found to possess a number of advantages as compared to the traditional approach.
机译:对于每个雅可比坐标,使用具有各个参数的振荡器表示的变分方法,被用于非相对论性计算多个三粒子库仑系统的基态能量,该系统由两个相同的粒子和一个不同的粒子组成。在构造的振荡器基础上,计算的精度和收敛速度最多可达到28个振荡器量子。将结果与仅使用一种此类非线性变化参数的传统方法的结果进行比较。与传统方法相比,发现具有用于Jacobi坐标的各个参数的方法具有许多优点。

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