He Jianghao, Zhang Ming, Liu Dajian, Bao Yaoxin, Li Chenlei, Pan Bingcheng, Huang Yishu, Yu Zejie, Liu Liu, Shi Yaocheng, Dai Daoxin
State Key Laboratory of Extreme Photonics and Instrumentation, Center for Optical and Electromagnetic Research, College of Optical Science and Engineering, International Research Center for Advanced Photonics, Ningbo Innovation Center, Zhejiang University, Hangzhou 310058, China.
ZJU-Hangzhou Global Scientific and Technological Innovation Center, Zhejiang University, Hangzhou 311215, China.
Nanophotonics. 2023 Dec 25;13(1):85-93. doi: 10.1515/nanoph-2023-0665. eCollection 2024 Jan.
A twelve-channel local-area-network (LAN) wavelength-division multiplexing (LWDM) filter is proposed and demonstrated with a uniform channel spacing of 4.5 nm (800 GHz) in the O-band of 1270-1330 nm by using x-cut lithium-niobate-on-insulator (LNOI) photonic waveguides for the first time. The present LWDM filter consists of twelve single-channel bandpass filters based on multimode waveguide gratings (MWGs) assisted with a TE/TE mode (de)multiplexer. In particular, two stages of MWGs in cascade are introduced for each single-channel bandpass filter, in order to achieve high sidelobe suppression ratios, thus reducing interchannel crosstalk. For the fabricated twelve-channel LWDM filter, all the channels have very excellent box-like spectral responses with low excess losses of ∼0.6 dB, broad 1-dB bandwidths of ∼2.9-3.4 nm (which is close to 75 % of the channel spacing), and ultra-low interchannel crosstalk of <-40 dB in experiments. In addition, the present device is highly tolerant to the random variations of the etching depth (±20 nm) and the grating waveguide width (±20 nm) of the LNOI photonic waveguides, showing great potential for high-capacity WDM systems.
首次提出并演示了一种十二通道局域网(LAN)波分复用(LWDM)滤波器,该滤波器采用x切绝缘体上铌酸锂(LNOI)光子波导,在1270 - 1330 nm的O波段具有4.5 nm(800 GHz)的均匀通道间距。目前的LWDM滤波器由十二个基于多模波导光栅(MWG)并辅以TE/TE模式解复用器的单通道带通滤波器组成。特别地,每个单通道带通滤波器引入两级级联的MWG,以实现高旁瓣抑制比,从而降低通道间串扰。对于制造的十二通道LWDM滤波器,所有通道在实验中都具有非常出色的盒状光谱响应,具有约0.6 dB的低过量损耗、约2.9 - 3.4 nm(接近通道间距的75%)的宽1 dB带宽以及<-40 dB的超低通道间串扰。此外,本器件对LNOI光子波导的蚀刻深度(±20 nm)和光栅波导宽度(±20 nm)的随机变化具有高度耐受性,在高容量波分复用(WDM)系统中显示出巨大潜力。