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首页> 外文期刊>The Journal of Chemical Physics >Energy quantization of chaos with the semiclassical phases alone
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Energy quantization of chaos with the semiclassical phases alone

机译:仅半经典相位的混沌能量量化

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The mechanism of energy quantization is studied for classical dynamics on a highly anharmonic potential, ranging from integrable, mixed, and chaotic motions. The quantum eigenstates (standing waves) are created by the phase factors (the action integrals and the Maslov index) irrespective of the integrability, when the amplitude factors are relatively slowly varying. Indeed we show numerically that the time Fourier transform of an approximate semiclassical correlation function in which the amplitude factors are totally removed reproduces the spectral positions (energy eigenvalues) accurately in chaotic regime. Quantization with the phase information alone brings about dramatic simplification to molecular science, since the amplitude factors in the lowest order semiclassical approximation diverge exponentially in a chaotic domain. (c) 2007 American Institute of Physics.
机译:针对具有高非谐势的经典动力学,研究了能量量化的机制,范围包括可积分运动,混合运动和混沌运动。当振幅因子相对缓慢地变化时,无论可积性如何,都由相位因子(作用积分和Maslov指数)创建量子本征态(驻波)。实际上,我们从数值上证明了,其中振幅因子被完全消除的近似半经典相关函数的时间傅立叶变换可精确地再现混沌状态下的光谱位置(能量特征值)。仅凭相位信息进行的量化就极大地简化了分子科学,因为最低阶半经典近似中的振幅因子在混沌域中呈指数分布。 (c)2007年美国物理研究所。

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