W. Leong, Mingjie Xin, Chang Huang, Zilong Chen, Shau-Yu Lan
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引用次数: 4
Abstract
Light storage in an optical fiber is an attractive component in quantum optical delay line technologies. Although silica-core optical fibers are excellent in transmitting broadband optical signals, it is challenging to tailor their dispersive property to slow down a light pulse or store it in the silica-core for a long delay time. Coupling a dispersive and coherent medium with an optical fiber is promising in supporting long optical delay. Here, we load cold Rb atomic vapor into an optical trap inside a hollow-core photonic crystal fiber, and store the phase of the light in a long-lived spin-wave formed by atoms and retrieve it after a fully controllable delay time using electromagnetically-induced-transparency (EIT). We achieve over 50 ms of storage time and the result is equivalent to 8.7x10^-5 dB s^-1 of propagation loss in an optical fiber. Our demonstration could be used for buffering and regulating classical and quantum information flow between remote networks.
光纤中的光存储是量子光延迟线技术中一个有吸引力的组成部分。尽管硅芯光纤在传输宽带光信号方面表现优异,但调整其色散特性以减慢光脉冲或将其长时间存储在硅芯光纤中是一项挑战。将色散和相干介质与光纤耦合是支持长光延迟的一种很有前途的方法。在这里,我们将冷铷原子蒸汽加载到空心光子晶体光纤内的光阱中,并将光的相位存储在由原子形成的长寿命自旋波中,并在完全可控的延迟时间后使用电磁诱导透明(EIT)将其检索出来。我们实现了超过50 ms的存储时间,其结果相当于光纤中传输损耗的8.7x10^-5 dB s^-1。我们的演示可以用于缓冲和调节远程网络之间的经典和量子信息流。