论文标题

嘈杂的监视梯形多量系统的量子动力学

Noisy monitored quantum dynamics of ergodic multi-qubit systems

论文作者

Schomerus, Henning

论文摘要

我采用随机马trix方法来设置和求解在受监视量子系统中出现的嘈杂单身动力学的统计模型。这些模型涵盖了一系列场景,结合了一个或几个量子位的可变强度的测量值。组合的动力学将系统驱动到其统计数据的状态,其统计数据反映了随机统一进化的竞争以及测量引起的背心崩溃了。这些作用是由纠缠介导的,正如我通过分析结果详细描述的。对于通过单个指定的量子组进行监视的范式案例,这揭示了一种简单的统计机制,其中监视条件条件受监视的量子的状态,然后对系统的其余数量施加统计约束。对于用规定强度监视几个量子位的情况,开发的形式主义使人们可以设置统计描述并以数值解决。最后,我还将分析结果与量子踢顶的受监视动力学进行了比较,从而揭示了两个统计模型描述完整的固定动力学,或者在演变的特定部分中解析时间尺度。

I employ random-matrix methods to set up and solve statistical models of noisy nonunitary dynamics that appear in the context of monitored quantum systems. The models cover a range of scenarios combining random dynamics and measurements of variable strength of one or several qubits. The combined dynamics drive the system into states whose statistics reflect the competition of randomizing unitary evolution and the measurement-induced backaction collapsing the state. These effects are mediated by entanglement, as I describe in detail by analytical results. For the paradigmatic case of monitoring via a single designated qubit, this reveals a simple statistical mechanism, in which the monitoring conditions the state of the monitored qubit, which then imposes statistical constraints on the remaining quantities of the system. For the case of monitoring several qubits with prescribed strength, the developed formalism allows one to set up the statistical description and solve it numerically. Finally, I also compare the analytical results to the monitored dynamics of a quantum kicked top, revealing two regimes where the statistical model either describes the full stationary dynamics, or resolves time scales during particular parts of the evolution.

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