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CONTROL OF QUANTUM STATES IN NONSTATIONARY CAVITY QED SYSTEMS

机译:非平稳腔QED系统中量子态的控制

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Interaction of atoms, moving through a lossless cavity, with a cavity field having a spatial structure, is treated with the aim of controlling quantum evolution of the field and atomic states. General fully-quantum analysis of the atom-field dynamics is applied for solving the finite-control problem for a micromaser device consisting of two-level atoms moving through a single-mode cavity. The semiclassical treatment of the same system shows that out of resonance between atoms and the field it may be fully uncontrollable in the sense of exponential sensitivity to initial conditions. By calculating maximal Lyapunov exponents we demonstrate dynamical chaos for a wide range of magnitudes of the detuning, the atom-field strength and the velocity of atoms which may be considered as control parameters for the micromaser.
机译:为了控制场的量子演化和原子态,对通过无损腔运动的原子与具有空间结构的腔场的相互作用进行了研究。原子场动力学的一般全量子分析用于解决由两级原子移动通过单模腔组成的微激子装置的有限控制问题。对同一系统的半经典处理表明,在原子和磁场之间没有共振,从对初始条件的指数敏感性的角度来看,它可能是完全无法控制的。通过计算最大Lyapunov指数,我们证明了失谐幅度,原子场强度和原子速度的较宽范围内的动态混沌,可以将其视为微激子的控制参数。

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