材料科学
量子存储器
Atom(片上系统)
量子
光子晶体光纤
芯(光纤)
光电子学
带宽(计算)
光子晶体
物理
量子网络
量子力学
量子纠缠
电信
复合材料
计算机科学
波长
并行计算
作者
Jed A. Rowland,Christopher Perrella,André N. Luiten,R. Gartman,K. T. Kaczmarek,Joshua Nunn,B. M. Sparkes
标识
DOI:10.1103/physrevapplied.21.014048
摘要
We present an experimental realization of a noise-free and high-bandwidth quantum memory scheme using a rubidium vapor that is confined within the hollow core of a photonic crystal fiber. We achieve the same internal efficiencies as similar free-space experiments (30%) for 4.5-ns-long optical pulses but with a 100-fold reduction in the control-field power required. Modeling indicates that this efficiency could be improved to 88% with higher control powers and the implementation of techniques such as light-induced atomic desorption to increase the optical depth. The compactness, robustness, and low drive power of this approach lends itself to direct integration into large-scale fiber-based quantum processors.
科研通智能强力驱动
Strongly Powered by AbleSci AI