Chen Yao-Tong, Du Lei, Liu Yi-Mou, Zhang Yan
Opt Express. 2020 Mar 2;28(5):7095-7107. doi: 10.1364/OE.385049.
We present a dual-gate optical transistor based on a multimode optomechanical system, composed of three indirectly coupled cavities and an intermediate mechanical resonator pumped by a frequency-matched field. In this system, two cavities driven on the red mechanical sidebands are regarded as input/ouput gates/poles and the third one on the blue sideband as a basic/control gate/pole, while the resonator as the other basic/control gate/pole. As a nonreciprocal scheme, the significant unidirectional amplification can be resulted by controlling the two control gates/poles. In particular, the nonreciprocal direction of the optical amplification/rectification can be controlled by adjusting the phase differences between two red-sideband driving fields (the pumping and probe fields). Meanwhile, the narrow window that can be analyzed by the effective mechanical damping rate, arises from the extra blue-sideband cavity. Moreover, the tunable slow/fast light effect can be observed, i.e, the group velocity of the unidirectional transmission can be controlled, and thus the switching scheme of slow/fast light effect can also utilized to realize both slow and fast lights through opposite propagation directions, respectively. Such an amplification transistor scheme of controllable amplitude, direction and velocity may imply exciting opportunities for potential applications in photon networks and quantum information processing.
我们展示了一种基于多模光机械系统的双栅极光学晶体管,该系统由三个间接耦合的腔和一个由频率匹配场泵浦的中间机械谐振器组成。在这个系统中,在红色机械边带上驱动的两个腔被视为输入/输出门/极,在蓝色边带上的第三个腔作为基本/控制门/极,而谐振器作为另一个基本/控制门/极。作为一种非互易方案,通过控制两个控制门/极可以实现显著的单向放大。特别地,通过调整两个红色边带驱动场(泵浦场和探测场)之间的相位差,可以控制光放大/整流的非互易方向。同时,由额外的蓝色边带腔产生的、可通过有效机械阻尼率分析的窄窗口出现。此外,可以观察到可调谐的慢/快光效应,即单向传输的群速度可以被控制,因此慢/快光效应的开关方案也可以用于分别通过相反的传播方向实现慢光和快光。这种幅度、方向和速度可控的放大晶体管方案可能为光子网络和量子信息处理中的潜在应用带来令人兴奋的机会。