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Integrated Electro-Optic Isolator on Thin Film Lithium Niobate

Integrated Electro-Optic Isolator on Thin Film Lithium Niobate

来源:Arxiv_logoArxiv
英文摘要

Optical isolator is an indispensable component of almost any optical system and is used to protect a laser from unwanted reflections for phase-stable coherent operation. The development of chip-scale optical systems, powered by semiconductor lasers integrated on the same chip, has resulted in a need for a fully integrated optical isolator. However, conventional approaches based on application of magneto-optic materials to break the reciprocity and provide required isolation have significant challenges in terms of material processing and insertion loss. As a result, many magnetic-free approaches have been explored, including acousto-optics, optical nonlinearity, and electro-optics. However, to date, the realization of an integrated isolator with low insertion loss, high isolation ratio, broad bandwidth, and low power consumption on a monolithic material platform is still absent. Here we realize non-reciprocal traveling-wave EO-based isolator on thin-film LN, enabling maximum optical isolation of 48 dB and an on-chip insertion loss of 0.5 dB using a single-frequency microwave drive at 21-dBm RF power. The isolation ratio is verified to be larger than 37 dB across a tunable optical wavelength range from 1510 to 1630 nm. We verify that our hybrid DFB laser - LN isolator module successfully protects the single-mode operation and the linewidth of the DFB laser from reflection. Our result is a significant step towards a practical high-performance optical isolator on chip.

Christian Reimer、Kevin Luke、Linbo Shao、Hannah R. Grant、Mian Zhang、Lingyan He、Eric Puma、Marko Lon?ar、Amirhassan Shams-Ansari、Mengjie Yu、Rebecca Cheng、Leif Johansson

10.1038/s41586-022-05345-1

光电子技术半导体技术物理学

Christian Reimer,Kevin Luke,Linbo Shao,Hannah R. Grant,Mian Zhang,Lingyan He,Eric Puma,Marko Lon?ar,Amirhassan Shams-Ansari,Mengjie Yu,Rebecca Cheng,Leif Johansson.Integrated Electro-Optic Isolator on Thin Film Lithium Niobate[EB/OL].(2022-12-04)[2025-08-04].https://arxiv.org/abs/2212.01945.点此复制

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