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首页> 外文期刊>The Journal of Chemical Physics >INTRINSIC RESONANCE REPRESENTATION OF QUANTUM MECHANICS
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INTRINSIC RESONANCE REPRESENTATION OF QUANTUM MECHANICS

机译:量子力学的内在共振表示

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The choice of basis states in quantum calculations can be influenced by several requirements, and sometimes a very natural basis suggests itself. However often one retreats to a ''merely complete'' basis, whose coefficients in the eigenstates carry Little physical insight. We suggest here an optimal representation, based purely on classical mechanics. ''Hidden'' constants of the motion and good actions already known to the classical mechanics are thus incorporated into the basis, leaving the quantum effects to be isolated and included by small matrix diagonalizations. This simplifies the hierarchical structure of couplings between ''zero-order'' states. We present a (non-perturbative) method to obtain such a basis-state as solutions to a certain resonant Hamilton-Jacobi equation. (C) 1997 American Institute of Physics. [References: 36]
机译:量子计算中基态的选择可能会受到多种要求的影响,有时会很自然地表明其本身。但是,通常人们会退缩到“完全完成”的基础,其本征态的系数几乎没有物理洞察力。我们在这里建议纯粹基于经典力学的最优表示。因此,将运动的“隐藏”常数和经典力学已知的良好动作合并到基础中,从而使量子效应得以隔离,并由小矩阵对角化来包含。这简化了“零阶”状态之间耦合的层次结构。我们提出了一种(非微扰)方法来获得这样的基态,作为某个共振哈密顿-雅各比方程的解。 (C)1997美国物理研究所。 [参考:36]

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