论文标题

基于共振四波混合的有效频率转换

Efficient frequency conversion based on resonant four-wave mixing

论文作者

Cheng, Chin-Yao, Liu, Zi-Yu, Hu, Pi-Sheng, Wang, Tsai-Ni, Chien, Chung-Yu, Lin, Jia-Kang, Juo, Jz-Yuan, Shiu, Jiun-Shiuan, Yu, Ite A., Chen, Ying-Cheng, Chen, Yong-Fan

论文摘要

光子的有效频率转换在光学量子技术中具有重要的应用,因为适合光子操作和通信的频率范围通常变化很大。最近,使用基于电磁诱导的透明度(EIT)的双$λ$四波混合(FWM)过程的有效频率转换系统引起了人们的关注,因为它有可能达到近100%的转化效率(CE)。为了获得如此高的CE,必须大大抑制此谐振型FWM系统中的自发排放损失。一个简单的解决方案是将施加的激光字段安排在向后配置中。但是,由于这种配置引起的相位不匹配可能会导致CE显着下降。在这里,我们证明了相位不匹配可以通过引入两光子失谐获得的相移来有效地补偿。在最佳条件下,我们通过在冷rubium原子中以130的光学深度使用此向后FWM系统,观察到从780 nm到795 nm的波长转换,最大CE为91.2(6)%。当前的工作代表了实现低损失,高保真性EIT基于EIT的量子频率转换的重要一步。

Efficient frequency conversion of photons has important applications in optical quantum technology because the frequency range suitable for photon manipulation and communication usually varies widely. Recently, an efficient frequency conversion system using a double-$Λ$ four-wave mixing (FWM) process based on electromagnetically induced transparency (EIT) has attracted considerable attention because of its potential to achieve a nearly 100% conversion efficiency (CE). To obtain such a high CE, the spontaneous emission loss in this resonant-type FWM system must be suppressed considerably. A simple solution is to arrange the applied laser fields in a backward configuration. However, the phase mismatch due to this configuration can cause a significant decrease in CE. Here, we demonstrate that the phase mismatch can be effectively compensated by introducing the phase shift obtained by two-photon detuning. Under optimal conditions, we observe a wavelength conversion from 780 to 795 nm with a maximum CE of 91.2(6)% by using this backward FWM system at an optical depth of 130 in cold rubidium atoms. The current work represents an important step toward achieving low-loss, high-fidelity EIT-based quantum frequency conversion.

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