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首页> 外文期刊>Physica Scripta: An International Journal for Experimental and Theoretical Physics >On the connection between complementarity and uncertainty principles in the Mach-Zehnder interferometric setting
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On the connection between complementarity and uncertainty principles in the Mach-Zehnder interferometric setting

机译:关于Mach-Zehnder干涉测量环境中互补性和不确定性原理之间的联系

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摘要

We revisit the connection between the complementarity and uncertainty principles of quantum mechanics within the framework of Mach-Zehnder interferometry. We focus our attention on the trade-off relation between complementary path information and fringe visibility. This relation is equivalent to the uncertainty relation of Schr?dinger and Robertson for a suitably chosen pair of observables. We show that it is equivalent as well to the uncertainty inequality provided by Landau and Pollak. We also study the relationship of this trade-off relation with a family of entropic uncertainty relations based on Rényi entropies. There is no equivalence in this case, but the different values of the entropic parameter do define regimes that provides us with a tool to discriminate between non-trivial states of minimum uncertainty. The existence of such regimes agrees with previous results of Luis (2011 Phys. Rev. A 84 034101), although their meaning was not sufficiently clear. We discuss the origin of these regimes with the intention of gaining a deeper understanding of entropic measures.
机译:我们在Mach-Zehnder干涉测量法的框架内,重新探讨了量子力学的互补性和不确定性原理之间的联系。我们将注意力集中在互补路径信息和边缘可见性之间的权衡关系上。对于适当选择的一对可观测物,该关系等同于薛定er和罗伯逊的不确定性关系。我们表明,它也等同于Landau和Pollak提供的不确定性不平等。我们还研究了这种折衷关系与基于Rényi熵的一系列熵不确定性关系的关系。在这种情况下不存在等价关系,但是熵参数的不同值确实定义了一些机制,这些机制为我们提供了一种工具来区分最小不确定性的非平凡状态。此类机制的存在与Luis(2011 Phys。Rev. A 84 034101)的先前结果相符,尽管其含义还不够清楚。我们讨论这些制度的起源是为了加深对熵测度的了解。

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