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Generic Emergence of Objectivity of Observables in Infinite Dimensions

机译:无限维度中可观测对象客观性的普遍出现

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Quantum Darwinism posits that information becomes objective whenever multiple observers indirectly probe a quantum system by each measuring a fraction of the environment. It was recently shown that objectivity of observables emerges generically from the mathematical structure of quantum mechanics, whenever the system of interest has finite dimensions and the number of environment fragments is large [F. G. S. L. Brandao, M. Piani, and P. Horodecki, Nat. Commun. 6, 7908 (2015)]. Despite the importance of this result, it necessarily excludes many practical systems of interest that arc infinite dimensional, including harmonic oscillators. Extending the study of quantum Darwinism to infinite dimensions is a nontrivial task: we tackle it here by using a modified diamond norm, suitable to quantify the distinguishability of channels in infinite dimensions. We prove two theorems that bound the emergence of objectivity, first for finite mean energy systems, and then for systems that can only be prepared in states with an exponential energy cutoff. We show that the latter class includes any bounded-energy subset of single-mode Gaussian states.
机译:量子达尔文主义认为,只要多个观察者通过分别测量环境的一部分来间接探测量子系统,信息就变得客观。最近的研究表明,只要感兴趣的系统具有有限的尺寸并且环境碎片的数量很大,可观察物的客观性通常就会从量子力学的数学结构中显现出来。 G. S. L. Brandao,M。Piani和N. P. Horodecki公社6,7908(2015)]。尽管此结果很重要,但它必然排除了许多令人感兴趣的实用系统,其中包括谐波振荡器。将量子达尔文主义的研究扩展到无穷大是一项艰巨的任务:我们在这里通过使用修改后的菱形范数来解决这一问题,该模型适合于量化无穷大通道的可分辨性。我们证明了限制客观性出现的两个定理,首先是有限平均能量系统,然后是只能在具有指数能量截止状态的状态下准备的系统。我们显示后一类包括单模高斯态的任何有界能量子集。

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