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在耦合原子-腔系统中以快速重复率实现单光子的可控生成。

Controlled generation of single photons in a coupled atom-cavity system at a fast repetition-rate.

作者信息

Kang Sungsam, Lim Sooin, Hwang Myounggyu, Kim Wookrae, Kim Jung-Ryul, An Kyungwon

机构信息

Department of Physics and Astronomy, Seoul National University, Seoul 151-742, South Korea.

出版信息

Opt Express. 2011 Jan 31;19(3):2440-7. doi: 10.1364/OE.19.002440.

Abstract

We have demonstrated high-speed controlled generation of single photons in a coupled atom-cavity system. A single 85Rb atom, pumped with a nanosecond-pulse laser, generates a single photon into the cavity mode, and the photon is then emitted out the cavity rapidly. By employing cavity parameters for a moderate coupling regime, the single-photon emission process was optimized for both high efficiency and fast bit rates up to 10 MHz. The temporal single-photon wave packet was studied by means of the photon-arrival-time distribution relative to the pump pulse and the efficiency of the single-photon generation was investigated as the pump power. The single-photon nature of the emission was confirmed by the second-order correlation of emitted photons.

摘要

我们已经证明了在耦合原子-腔系统中能够高速可控地产生单光子。一个被纳秒脉冲激光泵浦的单个85Rb原子,将一个单光子产生到腔模中,然后该光子迅速从腔中发射出来。通过采用适用于中等耦合 regime 的腔参数,单光子发射过程在高达10 MHz的高效率和快速比特率方面都得到了优化。通过相对于泵浦脉冲的光子到达时间分布研究了时间单光子波包,并将单光子产生效率作为泵浦功率进行了研究。发射光子的二阶相关性证实了发射的单光子性质。

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