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Phase-diffusion pattern in quantum-nondemolition systems

机译:量子非爆破系统中的相扩散模式

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We quantitatively analyze the dynamics of the quantum phase distribution associated with the reduced density matrix of a system, as the system evolves under the influence of its environment with an energy-preserving quantum nondemolition (QND) type of coupling. We take the system to be either an oscillator (harmonic or anharmonic) or a two-level atom (or equivalently, a spin-1/2 system), and model the environment as a bath of harmonic oscillators, initially in a general squeezed thermal state. The impact of the different environmental parameters is explicitly brought out as the system starts out in various initial states. The results are applicable to a variety of physical systems now studied experimentally with QND measurements.
机译:我们定量分析与系统的密度降低的矩阵相关的量子相分布的动力学,因为该系统在其环境的影响下以节能的量子不拆除(QND)类型耦合而发展。我们将系统设为振荡器(谐波或非谐波)或两能级原子(或等效的自旋1/2系统),并将环境建模为谐波振荡器的浴池,最初是在一般的压缩热中州。当系统以各种初始状态启动时,会明确显示出不同环境参数的影响。该结果适用于现在通过QND测量进行实验研究的各种物理系统。

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