Takagi Ryuji, Shiraishi Naoto
Nanyang Quantum Hub, School of Physical and Mathematical Sciences, Nanyang Technological University, 637371, Singapore.
Department of Physics, Gakushuin University, 1-5-1 Mejiro, Toshima-ku, Tokyo 171-8588, Japan.
Phys Rev Lett. 2022 Jun 17;128(24):240501. doi: 10.1103/PhysRevLett.128.240501.
Quantum resource manipulation may include an ancillary state called a catalyst, which aids the transformation while restoring its original form at the end, and characterizing the enhancement enabled by catalysts is essential to reveal the ultimate manipulability of the precious resource quantity of interest. Here, we show that allowing correlation among multiple catalysts can offer arbitrary power in the manipulation of quantum coherence. We prove that any state transformation can be accomplished with an arbitrarily small error by covariant operations with catalysts that may create a correlation within them while keeping their marginal states intact. This presents a new type of embezzlement-like phenomenon, in which the resource embezzlement is attributed to the correlation generated among multiple catalysts. We extend our analysis to general resource theories and provide conditions for feasible transformations assisted by catalysts that involve correlation, putting a severe restriction on other quantum resources for showing this anomalous enhancement, as well as characterizing achievable transformations in relation to their asymptotic state transformations. Our results provide not only a general overview of the power of correlation in catalysts but also a step toward the complete characterization of the resource transformability in quantum thermodynamics with correlated catalysts.
量子资源操纵可能包括一种称为催化剂的辅助态,它有助于变换,同时在最后恢复其原始形式,而表征催化剂所带来的增强对于揭示感兴趣的珍贵资源量的最终可操纵性至关重要。在这里,我们表明允许多个催化剂之间存在关联可以在量子相干操纵中提供任意的能力。我们证明,通过使用可能在它们之间产生关联同时保持其边缘态不变的催化剂进行协变操作,可以以任意小的误差完成任何态变换。这呈现了一种新型的类似挪用的现象,其中资源挪用归因于多个催化剂之间产生的关联。我们将分析扩展到一般资源理论,并为涉及关联的催化剂辅助的可行变换提供条件,对展示这种异常增强的其他量子资源施加了严格限制,同时表征了与其渐近态变换相关的可实现变换。我们的结果不仅提供了对催化剂中关联能力的总体概述,而且朝着在具有关联催化剂的量子热力学中完全表征资源可变换性迈出了一步。