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The quantum spectra analysis of the circular billiards in wells

机译:井中圆形台球的量子光谱分析

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We use a recently defined quantum spectral function and apply the method of closed-orbit theory to the 2D circular billiard system. The quantum spectra contain rich information of all classical orbits connecting two arbitrary points in the well. We study the correspondence between quantum spectra and classical orbits in the circular, 1/2 circular and 1/4 circular wells using the analytic and numerical methods. We find that the peak positions in the Fourier-transformed quantum spectra match accurately with the lengths of the classical orbits. These examples show evidently that semi-classical method provides a bridge between quantum and classical mechanics.
机译:我们使用最近定义的量子光谱函数,并将封闭轨道理论的方法应用于二维圆形台球系统。量子光谱中包含连接井中任意两个点的所有经典轨道的丰富信息。我们使用解析和数值方法研究了圆形,1/2圆形和1/4圆形阱中的量子光谱与经典轨道之间的对应关系。我们发现,傅立叶变换量子光谱中的峰值位置与经典轨道的长度精确匹配。这些例子显然表明,半经典方法在量子力学和经典力学之间架起了一座桥梁。

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