论文标题
地下蒸气量量子存储器中的单光子存储
Single-Photon Storage in a Ground-State Vapor Cell Quantum Memory
论文作者
论文摘要
将光子的单光子源和量子记忆相连,构成了量子技术的基础组成部分。实现异质,最先进的设备之间的兼容性是一个长期的挑战。我们基于PPKTP中的空腔增强自发参数下转换和基于匹配的内存,基于电磁诱导的透明度透明$^{87} $ rb Vapor。源发出的光子的带宽为370 MHz,将其速度放在技术相关的方向上,同时保持在记忆的接受带宽内。同时,实验复杂性保持较低,所有组件在室温下运行。通过在自旋偏振原子的超细结构中利用极化选择规则来大大降低记忆的噪声。我们第一次在基态蒸气单元格内存中演示单光量存储和检索,并带有$ g_ {c,\ text {ret}}}^{(2)} = 0.177(23)$,展示了检索到的光的单光子字符。我们的单光子源和原子记忆平台对于在高带宽上运行的室温量子网络的将来实验具有吸引力。
Interfaced single-photon sources and quantum memories for photons together form a foundational component of quantum technology. Achieving compatibility between heterogeneous, state-of-the-art devices is a long-standing challenge. We built and successfully interfaced a heralded single-photon source based on cavity-enhanced spontaneous parametric down-conversion in ppKTP and a matched memory based on electromagnetically induced transparency in warm $^{87}$Rb vapor. The bandwidth of the photons emitted by the source is 370 MHz, placing its speed in the technologically relevant regime while remaining well within the acceptance bandwidth of the memory. Simultaneously, the experimental complexity is kept low, with all components operating at or above room temperature. Read-out noise of the memory is considerably reduced by exploiting polarization selection rules in the hyperfine structure of spin-polarized atoms. For the first time, we demonstrate single-photon storage and retrieval in a ground-state vapor cell memory, with $g_{c,\text{ret}}^{(2)}=0.177(23)$ demonstrating the single-photon character of the retrieved light. Our platform of single-photon source and atomic memory is attractive for future experiments on room-temperature quantum networks operating at high bandwidth.