阵列波导光栅
光学
材料科学
通道间距
光子学
自由光谱范围
光电子学
波分复用
硅光子学
插入损耗
波长
波导管
光子集成电路
栅栏
衍射光栅
物理
作者
Yingjie Liu,Xi Wang,Yong Yao,Jiangbing Du,Qinghai Song,Ke Xu
出处
期刊:Optics Letters
[The Optical Society]
日期:2022-02-25
卷期号:47 (5): 1186-1186
被引量:14
摘要
Driven by the demand to extend optical fiber communications wavelengths beyond the C + L band, the 2 µm wave band has proven to be a promising candidate. Extensive efforts have been directed into developing high-performance and functional photonic devices. Here we report an integrated silicon photonic arrayed waveguide grating (AWG) fabricated in a commercial foundry. The device has 64 channels with a spacing of approximately 50 GHz (0.7 nm), covering the bandwidth from 1967 nm to 2012 nm. The on-chip insertion loss of the AWG is measured to be approximately 5 dB. By implementing a TiN metal layer, the AWG spectrum can be thermally tuned with an efficiency of 0.27 GHz/mW. The device has a very compact configuration with a footprint of 2.3 mm × 2 mm. The demonstrated AWG can potentially be used for dense wavelength division multiplexing in the 2 µm spectral band.
科研通智能强力驱动
Strongly Powered by AbleSci AI