Anisotropy-free arrayed waveguide gratings on X-cut thin film lithium niobate platform of in-plane anisotropy

Author:

Liu Liu1ORCID,YI JUNJIE1,Guo Changjian2,RUAN ZILIANG1,CHEN GENGXIN1,WEI HAIQIANG3,LU LIWANG3,GONG SHENGQI1,PAN XIAOFU1,SHEN XIAOWAN1,GUAN XIAOWEI4,Dai Daoxin1ORCID,ZHONG KANGPING3

Affiliation:

1. Zhejiang University

2. South China Normal University

3. The Hong Kong Polytechnic University

4. Jiaxing Research Institute, Zhejiang University

Abstract

Abstract Arrayed waveguide grating is a versatile and scalable integrated light dispersion device, which has been widely adopted in various applications, including, optical communications and optical sensing. Recently, thin-film lithium niobate emerges as a promising photonic integration platform, due to its ability of shrinking largely the size of typical lithium niobate based optical devices and possible integration of them on a chip. However, due to the intrinsic anisotropy of the material, to build an arrayed waveguide grating on X-cut thin-film lithium niobate has never been successful. Here, a universal strategy to design anisotropy-free dispersive components on a uniaxial in-plane anisotropic photonic integration platform is introduced for the first time. This leads to the first implementation of arrayed waveguide gratings on X-cut thin-film lithium niobate with various configurations and high-performances. The best insertion loss of 2.4dB and crosstalk of -24.1dB is obtained for the fabricated arrayed waveguide grating devices. Applications of such arrayed waveguide gratings as a wavelength router and in a wavelength-division multiplexed optical transmission system are also demonstrated.

Publisher

Research Square Platform LLC

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