论文标题
热图的热力学进步热图
Thermodynamic advancement in the causally inseparable occurrence of thermal maps
论文作者
论文摘要
量子力学允许发生事件而没有任何确定的因果秩序。在这里,与任何确定的(可分离)组成顺序相比,在因果不可分割的顺序中应用两个不同的热通道可以增强提取工作的潜力。即使在不为控制量子量的情况下分配任何热力学资源价值的情况下,这种增强也是可能的。此外,我们提供了通过非阴茎销图的因果增强的第一个非平凡的例子,为此,仍不清楚如何获得路径结构的叠加(在确定的因果阶下)。因此,突显时间叠加和路径叠加之间的差异可能是潜在的候选人。
Quantum mechanics allows the occurrence of events without having any definite causal order. Here, it is shown that the application of two different thermal channels in the causally inseparable order can enhance the potential to extract work, in contrast to any of their definite (separable) order of compositions. This enhancement is also possible even without assigning any thermodynamic resource value to the controlling qubit. Further, we provide the first non-trivial example of causal enhancement with non-unital pin maps, for which it is still not clear how to obtain a superposition of path structure (under definite causal order). Hence, it may be a potential candidate to accentuate the difference between superposition of time and superposition of path.