Li Jian-Bo, Xiao Si, Liang Shan, He Meng-Dong, Luo Jian-Hua, Kim Nam-Chol, Chen Li-Qun
Opt Express. 2017 Oct 16;25(21):25663-25673. doi: 10.1364/OE.25.025663.
We perform a theoretical study of the bistable four-wave mixing (FWM) response in a coupled system comprised of a semiconductor quantum dot (SQD) and a photonic crystal (PC) nanocavity in which the SQD is embedded. It is shown that the shape of the FWM spectrum can switch among single-peaked, double-peaked, triple-peaked, and four-peaked arising from the vacuum Rabi splitting and the exciton-nanocavity coupling. Especially, we map out bistability phase diagrams within a parameter subspace of the system, and find that it is easy to turn on or off the bistable FWM response by only adjusting the excitation frequency or the pumping intensity. Our results offer a feasible means for measuring the SQD-PC nanocavity coupling strength and open a new avenue to design optical switches and memories.
我们对由嵌入光子晶体(PC)纳米腔中的半导体量子点(SQD)组成的耦合系统中的双稳态四波混频(FWM)响应进行了理论研究。结果表明,由于真空拉比分裂和激子 - 纳米腔耦合,FWM光谱的形状可以在单峰、双峰、三峰和四峰之间切换。特别是,我们绘制了系统参数子空间内的双稳态相图,发现仅通过调整激发频率或泵浦强度就很容易开启或关闭双稳态FWM响应。我们的结果为测量SQD - PC纳米腔耦合强度提供了一种可行的方法,并为设计光开关和存储器开辟了一条新途径。