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Microwave resonator readout of an ensemble solid state spin sensor

机译:微波谐振器读出集合固态自旋传感器

摘要

Microwave resonator readout of the cavity-spin interaction between a spin defect center ensemble and a microwave resonator yields fidelities that are orders of magnitude higher than is possible with optical readouts. In microwave resonator readout, microwave photons probe a microwave resonator coupled to a spin defect center ensemble subjected to a physical parameter to be measured. The physical parameter shifts the spin defect centers' resonances, which in turn change the dispersion and/or absorption of the microwave resonator. The microwave photons probe these dispersion and/or absorption changes, yielding a measurement with higher visibility, lower shot noise, better sensitivity, and higher signal-to-noise ratio than a comparable fluorescence measurement. In addition, microwave resonator readout enables coherent averaging of spin defect center ensembles and is compatible with spin systems other than nitrogen vacancies in diamond.
机译:微波谐振器读出旋转缺陷中心集合和微波谐振器之间的腔 - 自旋相互作用产生的保真度,其比光学读出高的数量级。在微波谐振器读出中,微波光子探测器耦合到旋转缺陷中心合并的微波谐振器,其进行待测物理参数。物理参数使自旋缺陷中心的共振移位,这又改变了微波谐振器的分散和/或吸收。微波光子探测这些分散体和/或吸收变化,产生具有更高的可见度,较低噪声噪声,更好的灵敏度和更高信噪比的测量比相当的荧光测量。此外,微波谐振器读数使旋转缺陷中心合奏的相干平均可以与钻石中的氮空位以外的旋转系统兼容。

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