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Long-time low-latency quantum memory by dynamical decoupling

机译:通过动态解耦进行长时间低延迟量子存储

摘要

This disclosure relates to preserving a quantum state in a quantum memory. A controller of the quantum memory determines based on a characteristic of noise that causes deterioration of the quantum state a dynamical decoupling base sequence. The duration of the base sequence is shorter than or equal to an access latency time of the quantum memory to allow access to the quantum state within the access latency time. Further, the deterioration of the quantum state is bounded to an upper deterioration limit when the base sequence is repeatedly applied to the quantum system. This provides acceptable access times while simultaneously allowing long term storage of data in the quantum state with low error rates. Repeatedly applying the base sequence to the quantum system will first yield an increasing deterioration but that deterioration will eventually reach the upper limit. As a result, over time the error rates will not exceed that upper limit and the quantum state is stable.
机译:本公开涉及在量子存储器中保存量子状态。量子存储器的控制器基于引起量子状态恶化的噪声特性来确定动态去耦基序列。基本序列的持续时间小于或等于量子存储器的访问等待时间,以允许在访问等待时间之内访问量子状态。此外,当将基本序列重复应用于量子系统时,量子态的恶化被限制在恶化上限。这提供了可接受的访问时间,同时允许以低错误率以量子状态长期存储数据。反复将基本序列应用于量子系统将首先产生增加的劣化,但是该劣化最终将达到上限。结果,随着时间的流逝,错误率将不会超过该上限并且量子态是稳定的。

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