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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Non-reciprocal quantum interactions and devices via autonomous feed-forward
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APS -APS March Meeting 2017 - Event - Non-reciprocal quantum interactions and devices via autonomous feed-forward

机译:APS -APS 2017年3月会议-活动-通过自主前馈进行不可逆的量子相互作用和装置

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摘要

In a recent work [A. Metelmann and A. A. Clerk, Phys.~Rev.~X {f 5}, 021025 (2015)], a general reservoir-engineering approach for generating non-reciprocal quantum interactions and devices was described. We presenthow in many cases this general recipe can be viewed as an example of autonomous feed-forward: the full dissipative evolution is identical to the unconditional evolution in a setup where an observer performs an ideal quantum measurement of one system, and then uses the results to drive a second system. We also extend the application of this approach to non-reciprocal quantum amplifiers, showing the added functionality possible when using two engineered reservoirs. In particular, we demonstrate how to construct an ideal phase-preserving cavity-based amplifier which is full non-reciprocal, quantum-limited and free of any fundamental gain-bandwidth constraint.
机译:在最近的工作中[A. Metelmann and A. A. Clerk,Phys。〜Rev.〜X {f 5},021025(2015)]中,描述了一种用于产生不可逆的量子相互作用和装置的通用储层工程方法。我们介绍了如何在许多情况下将此一般性方法视为自主前馈的示例:在观察者对一个系统执行理想量子测量,然后使用结果的情况下,完全耗散进化与无条件进化相同驱动第二个系统。我们还将这种方法的应用扩展到不可逆的量子放大器,显示了使用两个工程储器时可能的附加功能。特别是,我们演示了如何构建一个理想的基于相位保持腔的放大器,该放大器是完全不可逆的,受量子限制的,并且不受任何基本增益带宽限制。

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