Wuhan National Laboratory for Optoelectronics, School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan 430074, Hubei, China.
Sci Rep. 2017 Jan 9;7:40223. doi: 10.1038/srep40223.
Driven by the increasing demand on handing microwave signals with compact device, low power consumption, high efficiency and high reliability, it is highly desired to generate, distribute, and process microwave signals using photonic integrated circuits. Silicon photonics offers a promising platform facilitating ultracompact microwave photonic signal processing assisted by silicon nanophotonic devices. In this paper, we propose, theoretically analyze and experimentally demonstrate a simple scheme to realize ultracompact rejection ratio tunable notch microwave photonic filter (MPF) based on a silicon photonic crystal (PhC) nanocavity with fixed extinction ratio. Using a conventional modulation scheme with only a single phase modulator (PM), the rejection ratio of the presented MPF can be tuned from about 10 dB to beyond 60 dB. Moreover, the central frequency tunable operation in the high rejection ratio region is also demonstrated in the experiment.
受在紧凑设备中处理微波信号、低功耗、高效率和高可靠性方面的需求的推动,使用光子集成电路来产生、分配和处理微波信号是非常需要的。硅光子学提供了一个很有前途的平台,通过硅纳米光子器件辅助,可以实现超紧凑的微波光子信号处理。在本文中,我们提出了一种理论分析和实验验证的简单方案,基于具有固定消光比的硅光子晶体(PhC)纳米腔,实现了超紧凑的可调节抑制比陷波微波光子滤波器(MPF)。使用仅带有单个相位调制器(PM)的传统调制方案,所提出的 MPF 的抑制比可以从大约 10 dB 调节到超过 60 dB。此外,实验中还演示了在高抑制比区域中的中心频率可调谐操作。