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Applying Bogomolny’s quantization method to generic classical systems

机译:将Bogomolny的量化方法应用于一般经典系统

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摘要

The quantization method of Bogomolny [Nonlinearity >5, 805 (1992)] can potentially provide semiclassical estimates for energy levels of all bound states of arbitrary systems. This approach requires the formation of the transfer matrix >TE as a function of energy E. Existing practical methods for calculating this matrix require a recalculation of many classical trajectories for each energy. This has hampered the application of Bogomolny’s method to generic systems that do not possess special classical scaling properties. Generalizing earlier work [H. Barak and K. G. Kay, Phys. Rev. E >88, 062926 (2013)], we develop initial value representation formulas for >TE that overcome this problem. These expressions are obtained from a generalized Herman-Kluk formula for the propagator that allows one to easily derive a family of semiclassical integral approximations for the Green’s function that are, in turn, used to form the transfer matrix. Calculations for two-dimensional systems show that Bogomolny’s method with the present expressions for >TE produces accurate semiclassical energy levels from small transfer matrices.
机译:Bogomolny的量化方法[Nonglinearity > 5 ,805(1992)]可以为任意系统的所有束缚态的能级提供半经典估计。这种方法需要根据能量E来形成传递矩阵> T E。现有的计算该矩阵的实用方法需要为每种能量重新计算许多经典轨迹。这阻碍了Bogomolny方法在不具有特殊经典缩放特性的通用系统上的应用。概括早期工作[H. Barak和K. G. Kay,物理学。 Rev. E > 88 ,062926(2013)],我们为克服此问题的> T E开发了初始值表示公式。这些表达式是从传播者的广义Herman-Kluk公式中获得的,该公式使人们可以轻松得出Green函数的半经典积分近似值,然后将其用于形成传递矩阵。二维系统的计算表明,具有> T E当前表达式的Bogomolny方法从较小的传递矩阵中产生精确的半经典能级。

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