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The semiclassical propagator in Fock space: dynamical echo and many-body interference

机译:福克空间中的半经典传播器:动态回波和多体干涉

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摘要

We present a semiclassical approach to many-body quantum propagation in terms of coherent sums over quantum amplitudes associated with the solutions of corresponding classical nonlinear wave equations. This approach adequately describes interference effects in the many-body space of interacting bosonic systems. The main quantity of interest, the transition amplitude between Fock states when the dynamics is driven by both single-particle contributions and many-body interactions of similar magnitude, is non-perturbatively constructed in the spirit of Gutzwiller’s derivation of the van Vleck propagator from the path integral representation of the time evolution operator, but lifted to the space of symmetrized many-body states. Effects beyond mean-field, here representing the classical limit of the theory, are semiclassically described by means of interfering amplitudes where the action and stability of the classical solutions enter. In this way, a genuinely many-body echo phenomenon, coherent backscattering in Fock space, is presented arising due to coherent quantum interference between classical solutions related by time reversal.
机译:我们根据与相应经典非线性波动方程解相关的量子振幅上的相干总和,提出了一种多体量子传播的半经典方法。这种方法充分描述了相互作用的玻色系统在多体空间中的干扰效应。感兴趣的主要量是当动力学由单粒子贡献和相似大小的多体相互作用驱动时的福克状态之间的跃迁幅度,是按照古兹威勒从范弗莱克传播器的推导中非扰动地构造的。时间演化算子的​​路径积分表示,但提升为对称的多体状态空间。均值场之外的影响(这里代表理论的经典极限)是通过干扰振幅(经典解决方案的作用和稳定性进入其中)来半经典地描述的。这样,由于时间逆转相关的经典解之间的相干量子干扰,产生了一个真正的多体回波现象,即在Fock空间中的相干反向散射。

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