论文标题
连贯的谐振传输
Coherent resonant transmission
论文作者
论文摘要
在顺时针和逆时针模式之间存在谐振器内模式耦合的情况下,研究了耦合谐振阵列中的无反射连贯的光传输,这在调节光流而不是诱导不需要的反向散射的情况下起着建设性的作用。谐振器内模式间耦合与谐振器间耦合之间的相互作用使得顺时针和逆时针模式构成的正确超级注射的相干谐振透射(CRT)。初始激发的叠加系数决定了谐振传递的模式手性。依次体验CRT的时间反转过程和CRT意识到完美的模式转换,即注射波的模式手性在谐振传输后切换到相对。我们在相干光传输方面的发现为控制和操纵光场的综合光场,纳米光子,手性光学器件等提供了见解。
The reflectionless coherent light transport in the coupled resonator array is investigated in the presence of intra-resonator intermodal coupling between the clockwise and counterclockwise modes, which plays a constructive role for modulating the light flow rather than inducing the unwanted backscattering. The interplay between the intra-resonator intermodal coupling and the inter-resonator couplings enables the coherent resonant transmission (CRT) of the properly superposed injection constituted by the clockwise and counterclockwise modes. The superposition coefficients of the initial excitation determine the mode chirality of the resonant transmission. Sequentially experiencing the time-reversal process of CRT and the CRT realizes the perfect mode conversion that the mode chirality of the injection wave switches into the opposite after resonant transmission. Our findings on the coherent light transport provide insights for the control and manipulation of light field in the integrated photonics, nanophotonics, chiral optics, and beyond.