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MICROWAVE-TO-OPTICAL TRANSDUCER USING MAGNETO-OPTICS AT ZERO APPLIED MAGNETIC FIELD

机译:在零应用磁场下使用磁光微波到光传感器

摘要

Systems and methods for providing a microwave-to-optical (M2O) transducer using magneto-optical field interactions with spin states of an ensemble of ions doped into a crystal structure is presented. According to one aspect, the crystal structure is a (171Yb3+:YVO) doped crystal structure that provides a substrate for an on-chip implementation of the transducer. According to one aspect, coupling of microwave and optical signals to the ions is based on respective microwave and optical waveguides fabricated in or on the doped crystal structure. According to another aspect, coupling of microwave and optical signals to the ions is based on respective microwave and optical resonant cavities fabricated in or on the doped crystal structure. Transduction can be based on either a three-level system with near-zero applied external magnetic field or on a four-level system with zero applied external magnetic field. The transducer can operate reversibly as an optical-to-microwave (O2M) transducer.
机译:呈现了用于提供使用磁光场相互作用的微波到光学(M2O)换能器的系统和方法,其具有与掺杂到晶体结构中的离子集合的旋转状态。 根据一个方面,晶体结构是(171YB3 +:YVO)掺杂晶体结构,其提供用于换能器的片上实施的基板。 根据一个方面,微波和光学信号与离子的耦合基于掺杂晶体结构中或掺杂晶体结构上的各个微波和光波导。 根据另一方面,微波和光学信号与离子的耦合基于掺杂晶体结构上或上的各个微波和光学谐振腔。 转导可以基于具有近零应用外部磁场的三级系统或在具有零应用外部磁场的四级系统上。 换能器可以可逆地操作,作为光到微波(O2M)换能器。

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