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首页> 外文期刊>Annals of Physics >Decoherence and equilibration under nondestructive measurements
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Decoherence and equilibration under nondestructive measurements

机译:非破坏性测量下的去相干和平衡

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摘要

The evolution of observable quantities of finite quantum systems is analyzed when the latter are subject to nondestructive measurements. The type and number of measurements characterize the level of decoherence produced in the system. A finite number of instantaneous measurements leads to only a partial decoherence. But infinite number of such measurements yields complete decoherence and equilibration. Continuous measurements result in partial decoherence in finite time, but produce complete decoherence and equilibration as time tends to infinity. Resulting equilibrium states are characterized by representative statistical ensembles that, generally, retain information on initial conditions. Any system, to be observable, necessarily requires the presence of measurements, whose large number leads to the system equilibration and decoherence.
机译:当有限量子系统受到无损测量时,分析了可观测量的有限量子系统的演化。测量的类型和数量表征了系统中产生的退相干水平。有限数量的瞬时测量仅导致部分退相干。但是,无数种这样的测量会产生完全的去相干和平衡。连续测量会在有限时间内导致部分退相干,但随着时间趋于无穷大,会产生完全退相干和平衡。产生的平衡状态的特征是具有代表性的统计集合,这些集合通常保留有关初始条件的信息。可以观察到的任何系统都必须存在测量值,这些测量值的大量存在会导致系统平衡和去相干。

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