Conditional quantum thermometry—enhancing precision by measuring less

IF 5.6 2区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY
Akira Sone, Diogo O Soares-Pinto and Sebastian Deffner
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引用次数: 0

Abstract

Taking accurate measurements of the temperature of quantum systems is a challenging task. The mathematical peculiarities of quantum information make it virtually impossible to measure with infinite precision. In the present paper, we introduce a generalize thermal state, which is conditioned on the pointer states of the available measurement apparatus. We show that this conditional thermal state outperforms the Gibbs state in quantum thermometry. The origin for the enhanced precision can be sought in its asymmetry quantified by the Wigner–Yanase–Dyson skew information. This additional resource is further clarified in a fully resource-theoretic analysis, and we show that there is a Gibbs-preserving map to convert a target state into the conditional thermal state. We relate the quantum J-divergence between the conditional thermal state and the same target state to quantum heat.
条件量子测温--通过减少测量提高精度
精确测量量子系统的温度是一项极具挑战性的任务。量子信息在数学上的特殊性使其几乎不可能进行无限精确的测量。在本文中,我们引入了一种广义热态,它以现有测量仪器的指针状态为条件。我们证明,在量子测温中,这种条件热态优于吉布斯态。精度提高的原因可以从维格纳-扬纳-戴森偏斜信息量化的不对称中找到。我们通过完全的资源理论分析进一步阐明了这一额外资源,并证明存在一种吉布斯保留映射,可以将目标态转换为条件热态。我们将条件热态与同一目标态之间的量子 J-发散与量子热联系起来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Quantum Science and Technology
Quantum Science and Technology Materials Science-Materials Science (miscellaneous)
CiteScore
11.20
自引率
3.00%
发文量
133
期刊介绍: Driven by advances in technology and experimental capability, the last decade has seen the emergence of quantum technology: a new praxis for controlling the quantum world. It is now possible to engineer complex, multi-component systems that merge the once distinct fields of quantum optics and condensed matter physics. Quantum Science and Technology is a new multidisciplinary, electronic-only journal, devoted to publishing research of the highest quality and impact covering theoretical and experimental advances in the fundamental science and application of all quantum-enabled technologies.
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