论文标题
频率域中的镜像诱导的反射
Mirror-induced reflection in the frequency domain
论文作者
论文摘要
镜子在光学上无处不在,用于控制太空中光信号的传播。在这里,我们提出并演示了使用电磁调制的频率域镜子在频率合成维度中提供光学能量的反射。首先,我们从理论上探索了频率镜的概念,并研究了传播损失和频域中的反射率。接下来,我们通过在薄膜锂锂微谐音器中探索通过极化模式分解形成的镜子。通过刺激具有不同波矢量的合成频率晶体的Bloch波,我们显示出各种状态是由正向传播和反射波之间的干扰形成的。最后,我们扩展了这个想法,并生成可调的频率镜子,并使用niobate微谐复合液展示了这些镜子形成的捕获状态。控制频域中光流的能力可以实现广泛的应用,包括研究随机步行,玻色子采样,频率梳子源,光学计算和拓扑光子学。此外,可能可以证明频域中的腔,激光器和光子晶体等光学元件。
Mirrors are ubiquitous in optics and are used to control the propagation of optical signals in space. Here we propose and demonstrate frequency domain mirrors that provide reflections of the optical energy in a frequency synthetic dimension, using electro-optic modulation. First, we theoretically explore the concept of frequency mirrors with the investigation of propagation loss, and reflectivity in the frequency domain. Next, we explore the mirror formed through polarization mode-splitting in a thin-film lithium niobate micro-resonator. By exciting the Bloch waves of the synthetic frequency crystal with different wave vectors, we show various states formed by the interference between forward propagating and reflected waves. Finally, we expand on this idea, and generate tunable frequency mirrors as well as demonstrate trapped states formed by these mirrors using coupled lithium niobate micro-resonators. The ability to control the flow of light in the frequency domain could enable a wide range of applications, including the study of random walks, boson sampling, frequency comb sources, optical computation, and topological photonics. Furthermore, demonstration of optical elements such as cavities, lasers, and photonic crystals in the frequency domain, may be possible.