论文标题
通过基本热作战作用催化
Catalysis in Action via Elementary Thermal Operations
论文作者
论文摘要
我们研究了基本热作战框架中的催化,利用此类操作的不同特征来照亮催化动力学。作为基础工作,我们建立了新的技术工具,以增强基本热运算的状态过渡规则的计算性。具体而言,我们为QUTRIT系统和任意维度的初始状态的特殊类别提供了状态过渡的完整表征。通过将这些工具与数值方法结合使用,我们发现,通过采用小型催化剂(包括量子催化剂),可以显着扩大QUTRIT系统的状态过渡集。这种进步显着缩小了基本热作战和通用热操作之间可及的状态的差距。此外,我们将催化过渡分解为时间分辨的演化,这对系统和浴室之间的非平衡自由能交换进行了严格的跟踪。我们的结果为热力学中的简单且可行的催化优势提供了证据,同时提供了分析催化过程机制的洞察力。
We investigate catalysis in the framework of elementary thermal operations, leveraging the distinct features of such operations to illuminate catalytic dynamics. As groundwork, we establish new technical tools that enhance the computability of state transition rules for elementary thermal operations. Specifically, we provide a complete characterisation of state transitions for a qutrit system and special classes of initial states of arbitrary dimension. By employing these tools in conjunction with numerical methods, we find that by adopting a small catalyst, including just a qubit catalyst, one can significantly enlarge the set of state transitions for a qutrit system. This advancement notably narrows the gap of reachable states between elementary thermal operations and generic thermal operations. Furthermore, we decompose catalytic transitions into time-resolved evolution, which critically enables the tracking of nonequilibrium free energy exchanges between the system and bath. Our results provide evidence for the existence of simple and practicable catalytic advantage in thermodynamics while offering insight into analysing the mechanism of catalytic processes.