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Solid-State Quantum Memory Based on a Nuclear Spin Coupled to an Electronic Spin

机译:基于核自旋耦合电子自旋的固态量子存储器

摘要

A system comprising a solid state lattice containing an electronic spin coupled to a nuclear spin; an optical excitation configuration which is arranged to generate first optical radiation to excite the electronic spin to emit output optical radiation without decoupling the electronic and nuclear spins; wherein the optical excitation configuration is further arranged to generate second optical radiation of higher power than the first optical radiation to decouple the electronic spin from the nuclear spin thereby increasing coherence time of the nuclear spin; a first pulse source configured to generate radio frequency (RF) excitation pulse sequences to manipulate the nuclear spin and to dynamically decouple the nuclear spin from one or more spin impurities in the solid state lattice so as to further increase the coherence time of the nuclear spin; a second pulse source configured to generate microwave excitation pulse sequences to manipulate the electronic spin causing a change in intensity of the output optical radiation correlated with the electronic spin and with the nuclear spin via the coupling between the electronic spin and the nuclear spin; and a detector configured to detect the output optical radiation correlated with the electronic spin and the nuclear spin so as to detect a nuclear spin state of the nuclear spin.
机译:一种系统,包括固态晶格,该固态晶格包含耦合至核自旋的电子自旋;一种光激发结构,其布置为产生第一光辐射以激发电子自旋以发射输出光辐射,而不使电子和核自旋解耦;其中,所述光激发配置还被布置为产生比所述第一光辐射更高功率的第二光辐射,以将所述电子自旋与所述核自旋解耦,从而增加所述核自旋的相干时间;第一脉冲源,其配置为产生射频(RF)激发脉冲序列,以操纵核自旋,并使核自旋与固态晶格中的一个或多个自旋杂质动态解耦,从而进一步增加核自旋的相干时间;第二脉冲源,其配置为产生微波激发脉冲序列以操纵电子自旋,从而通过电子自旋和核自旋之间的耦合而引起与电子自旋和与核自旋相关的输出光辐射的强度变化;检测器,其被配置为检测与电子自旋和核自旋相关的输出光辐射,以检测核自旋的核自旋状态。

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