Center for Photon Information Processing, and School of Electrical Engineering and Computer Science, Gwangju Institute of Science and Technology, 123 Chumdangwagi-ro, Buk-gu, Gwangju, 61005, South Korea.
Sci Rep. 2017 Aug 9;7(1):7655. doi: 10.1038/s41598-017-08051-5.
A quantum memory protocol of controlled ac Stark echoes (CASE) based on a double rephasing photon echo scheme via controlled Rabi flopping is proposed. The double rephasing scheme of photon echoes inherently satisfies the no-population inversion requirement for quantum memories, but the resultant absorptive echo remains a fundamental problem. Herein, it is reported that the first echo in the double rephasing scheme can be dynamically controlled so that it does not affect the second echo, which is accomplished by using unbalanced ac Stark shifts. Then, the second echo is coherently controlled to be emissive via controlled coherence conversion. Finally a near perfect ultralong CASE is presented using a backward echo scheme. Compared with other methods such as dc Stark echoes, the present protocol is all-optical with advantages of wavelength-selective dynamic control of quantum processing for erasing, buffering, and channel multiplexing.
提出了一种基于双相位光回波方案的受控 ac Stark 回波(CASE)量子存储协议,该方案通过受控拉比翻转实现。双相位光回波方案内在地满足量子存储器的无粒子数反转要求,但产生的吸收回波仍然是一个基本问题。本文报道了通过非平衡 ac Stark 位移可以动态控制双相位光回波中的第一个回波,使其不影响第二个回波,然后通过控制相干转换使第二个回波相干发射。最后,采用后向回波方案得到了近乎完美的超长 CASE。与其他方法(如直流 Stark 回波)相比,本协议具有全光学的特点,可对量子处理进行波长选择性的动态控制,用于擦除、缓冲和信道复用。