论文标题
马尔可夫量子的拓扑保护和控制
Topological Protection and Control of Quantum Markovianity
论文作者
论文摘要
在出生的 - 马尔科夫近似下,Qubit系统(例如两级原子)在弱耦合到无特征的环境时会经历无记忆的量子相干性或激发的衰减。最近,已经表明,由于安德森本地化,环境中不可避免的障碍是导致非马克维亚效应和信息从环境中流动到系统的原因。这种〜将疾病变成了增强系统中非谷物的资源 - 环境动力学,这可能与空腔量子电动力学相关。在这里,我们考虑了一个Qubit弱耦合到具有非平凡拓扑阶段的二维浴室的破裂动力学,例如嵌入在二维耦合式载体阵列中的二级原子,并与量子段落的量子模式相抗衡。量子厅浴。有趣的是,关闭量规场,即将浴缸翻转成拓扑琐事,使人们可以重新引入非马克维亚效应。这样的结果表明,可以利用可调节的合成规场更改浴的拓扑阶段,以控制Qubit-Encrignment System中的非马克维亚效应和量子信息回流。
Under the Born--Markov approximation, a qubit system, such as a two-level atom, is known to undergo a memoryless decay of quantum coherence or excitation when weakly coupled to a featureless environment. Recently, it has been shown that unavoidable disorder in the environment is responsible for non-Markovian effects and information backflow from the environment into the system owing to Anderson localization. This~turns disorder into a resource for enhancing non-Markovianity in the system--environment dynamics, which could be of relevance in cavity quantum electrodynamics. Here we consider the decoherence dynamics of a qubit weakly coupled to a two-dimensional bath with a nontrivial topological phase, such as a two-level atom embedded in a two-dimensional coupled-cavity array with a synthetic gauge field realizing a quantum-Hall bath, and~show that Markovianity is protected against moderate disorder owing to the robustness of chiral edge modes in the quantum-Hall bath. Interestingly, switching off the gauge field, i.e., flipping the bath into a topological trivial phase, allows one to re-introduce non-Markovian effects. Such a result indicates that changing the topological phase of a bath by a tunable synthetic gauge field can be harnessed to control non-Markovian effects and quantum information backflow in a qubit-environment system.