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Efficient microwave to optical photon conversion: an electro-optical realization

机译:高效的微波到光子的光子转换:一种电光实现

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摘要

Linking classical microwave electrical circuits to the optical telecommunication band is at the core of modern communication. Future quantum information networks will require coherent microwave-to-optical conversion to link electronic quantum processors and memories via low-loss optical telecommunication networks. Efficient conversion can be achieved with electro-optical modulators operating at the single microwave photon level. In the standard electro-optic modulation scheme, this is impossible because both up- and down-converted sidebands are necessarily present. Here, we demonstrate true single-sideband up- or down-conversion in a triply resonant whispering gallery mode resonator by explicitly addressing modes with asymmetric free spectral range. Compared to previous experiments, we show a 3 orders of magnitude improvement of the electro-optical conversion efficiency, reaching 0.1% photon number conversion for a 10 GHz microwave tone at 0.42 mW of optical pump power. The presented scheme is fully compatible with existing superconducting 3D circuit quantum electrodynamics technology and can be used for nonclassical state conversion and communication. Our conversion bandwidth is larger than 1 MHz and is not fundamentally limited.
机译:将经典的微波电路连接到光通信频段是现代通信的核心。未来的量子信息网络将需要相干的微波到光学转换,以通过低损耗光通信网络链接电子量子处理器和存储器。使用在单个微波光子级上运行的电光调制器可以实现有效的转换。在标准的电光调制方案中,这是不可能的,因为必须同时存在上变频和下变频的边带。在这里,我们通过显式寻址具有非对称自由光谱范围的模式,展示了三重谐振耳语画廊模式谐振器中的真正单边带上变频或下变频。与以前的实验相比,我们显示出电光转换效率提高了3个数量级,在光泵浦功率为0.42 mW的情况下,对于10 GHz微波音调,光子数转换达到0.1%。提出的方案与现有的超导3D电路量子电动力学技术完全兼容,可用于非经典状态转换和通信。我们的转换带宽大于1 MHz,并且不受根本限制。

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