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首页> 外文期刊>Physical Review, A >On-chip microwave-to-optical quantum coherent converter based on a superconducting resonator coupled to an electro-optic microresonator
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On-chip microwave-to-optical quantum coherent converter based on a superconducting resonator coupled to an electro-optic microresonator

机译:基于耦合到电光微谐振器的超导谐振器的片上微波光量子相干转换器

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摘要

We propose a device architecture capable of direct quantum coherent electro-optical conversion of microwave-to-optical photons. The hybrid system consists of a planar superconducting microwave circuit coupled to an integrated whispering-gallery-mode microresonator made from an electro-optical material. We show that by exploiting the large vacuum electric field of the planar microwave resonator, electro-optical (vacuum) coupling strengths g(0) as large as similar to 2 pi O(10 - 100) kHz are achievable with currently available technology-a more than 3 orders of magnitude improvement over prior designs and realizations. Operating at millikelvin temperatures, such a converter would enable high-efficiency conversion of microwave-to-optical photons. We analyze the added noise and show that maximum quantum coherent conversion efficiency is achieved for a multiphoton cooperativity of unity which can be reached with optical power as low as O(1) mW.
机译:我们提出了一种能够直接将微波转换为光子的量子相干电光转换的设备架构。混合系统由一个平面超导微波电路组成,该电路耦合到由电光材料制成的集成式耳语画廊模式微谐振器。我们表明,通过利用平面微波谐振器的大真空电场,利用当前可用的技术可实现与2 pi O(10-100)kHz一样大的电光(真空)耦合强度g(0)与以前的设计和实现相比,改进了3个数量级以上。这种转换器可在毫开尔文温度下工作,可以实现微波到光学光子的高效转换。我们分析了增加的噪声,并表明,对于多光子协作性,可以达到最大量子相干转换效率,而光功率低至O(1)mW即可达到。

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