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High‐Performance Mode‐Multiplexing Device with Anisotropic Lithium‐Niobate‐on‐Insulator Waveguides

Weike Zhao, Ruoran Liu, Mingyu Zhu, Zehao Guo, Jianghao He, Hanwen Li, Bingcheng Pan, Zejie Yu, Liu Liu, Yaocheng Shi, Daoxin Dai

2023Laser & Photonics Review63 citationsDOI

Abstract

Abstract Thin‐film lithium‐niobate photonics has attracted intensive attention due to its superior material properties. In particular, multimode lithium‐niobate photonics is becoming attractive for the applications of high‐capacity optical interconnects and high‐efficiency nonlinear optics. However, multimode manipulation in lithium‐niobate‐on‐insulator (LNOI) waveguides is not easy because there might occur some mode hybridness due to the vertical asymmetry as well as the material anisotropy. In this paper, high‐performance mode‐multiplexing devices with anisotropic LNOI waveguides are proposed, consisting of a multi‐channel mode (de)multiplexer and a sharp multimode waveguide bend (MWB). The mode (de)multiplexer is designed with Z‐propagation LNOI waveguides to avoid the mode hybridness. Meanwhile, the sharp MWB is designed to connect with a Y‐propagation waveguide, enabling access to the highest electro‐optic coefficient and second‐order nonlinear coefficient. The fabricated mode (de)multiplexer has a low excess loss less than 0.2 dB as well as low crosstalk less than ‐19 dB in the wavelength range of 1520–1600 nm. These high‐performance multimode photonic devices are useful for developing multimode LN photonics.

Topics & Concepts

Lithium niobateMultiplexerMulti-mode optical fiberPhotonicsMaterials scienceWaveguideOpticsOptoelectronicsMultiplexingPower dividers and directional couplersOptical fiberElectronic engineeringPhysicsEngineeringPhotonic and Optical DevicesAdvanced Fiber Laser TechnologiesPhotorefractive and Nonlinear Optics
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