论文标题
高效率连贯的微波转换通过非谐波散射
High efficiency coherent microwave-to-optics conversion via off-resonant scattering
论文作者
论文摘要
可以将量子信号从微波炉转换为光学结构域的量子传感器是量子信息技术的关键光学接口。一致的微波转换已通过各种物理平台实现,但是它们都限于低效率低于50 \%的低效率,即无限制的量子制度的阈值。在这里,我们报告了使用Rydberg原子和抗谐波散射技术的连贯的微波转导,其效率为$ 82 \ pm 2 \%$,带宽约为1 MHz。微波光子的高转化效率范围从数千至50,这表明我们的转导很容易适用于单光子水平。如果不需要空腔或积极的冷却量子基态,我们的结果将使原子传感器更接近量子技术中的实际应用。
Quantum transducers that can convert quantum signals from the microwave to the optical domain are a crucial optical interface for quantum information technology. Coherent microwave-to-optics conversions have been realized with various physical platforms, but all of them are limited to low efficiencies of less than 50\%, the threshold of the no-cloning quantum regime. Here we report a coherent microwave-to-optics transduction using Rydberg atoms and off-resonant scattering technique with an efficiency of $82\pm 2\%$ and a bandwidth of about 1 MHz. The high conversion efficiency is maintained for microwave photons range from thousands to about 50, suggesting that our transduction is readily applicable to the single-photon level. Without requiring cavities or aggressive cooling to quantum ground states, our results would push atomic transducers closer to practical applications in quantum technologies.