论文标题

在双Quibenty系统中的渐近相锁定和同步

Asymptotic phase-locking and synchronization in two-qubit systems

论文作者

Štěrba, Daniel, Novotný, Jaroslav, Jex, Igor

论文摘要

该论文涉及在经历了林德布拉德动力学与正常lindblad操作员的连续马尔可夫进化中的两分射系统中的自发渐近锁定和同步。使用分析方法,获得并分类给定框架内的所有相锁定构造机制。提供了各自吸引人空间的详细结构,并用于从各个角度探索其性质。在相锁的过程中,确定了两个量子位的相同固定部分的附加过程,包括特殊情况是最严格的同步形式。提出了一个突出的基础,该基础表明从物理观点,存在两种主要类型的相锁定机制。探索了保留有关初始状态的信息的能力,并建立了对所得相锁动力学振荡振幅的上限。讨论了渐近状态和相锁机制的置换对称性。最后,三个可分析治疗的例子驳斥了纠缠生产的可能性。

The paper concerns spontaneous asymptotic phase-locking and synchronization in two-qubit systems undergoing continuous Markovian evolution described by Lindbladian dynamics with normal Lindblad operators. Using analytic methods, all phase-locking-enforcing mechanisms within the given framework are obtained and classified. Detailed structures of their respective attractor spaces are provided and used to explore their properties from various perspectives. Amid phase-locking processes those additionally enforcing identical stationary parts of both qubits are identified, including as a special case the strictest form of synchronization conceivable. A prominent basis is presented which reveals that from a physical point of view two main types of phase-locking mechanisms exist. The ability to preserve information about the initial state is explored and an upper bound on the amplitude of oscillations of the resulting phase-locked dynamics is established. Permutation symmetry of both asymptotic states and phase-locking mechanisms is discussed. Lastly, the possibility of entanglement production playing the role of a phase-locking witness is rebutted by three analytically treatable examples.

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