High-order mode waveguide amplifier with high mode extinction ratio written in an Er3+-doped phosphate glass

Author:

Sun Xiangyu1,Wang YuYing2,Zhong Lijing2,Chen Daoyuan,Xu BeibeiORCID,Ma Zhijun2,Liu Xiaofeng3,Barillaro Giuseppe4ORCID,Chen Zhi2,Qiu Jianrong1

Affiliation:

1. Ningbo Femto & Nano Laser Technology Co. Ltd.

2. Zhejiang Lab

3. Zhejiang University

4. Università di Pisa

Abstract

Inscription of fiber-compatible active waveguides in high-gain glass, followed by direct interconnection with few-mode fibers, is one of the most promising solutions for all-optical mode-division multiplexing. In this work, based on the femtosecond laser writing technique, we propose a general fabrication scheme for inscribing high-order mode waveguides in glass, by carefully tailoring the cross-section of the waveguides to match the mode intensity distribution via an improved multi-scan approach. Specifically, we design and fabricate two kinds of waveguides, namely, LP01-mode waveguide and LP11-mode waveguide in a highly Er3+-doped phosphate glass, enabling the insertion loss of the waveguides to be as low as 1.88 dB, and the mode extraction factor of the LP11-mode waveguide up to ∼24 dB. Importantly, we have successfully achieved optical amplification of the waveguides, with an on-off gain as high as 3.52 dB. This novel high-order mode waveguide amplifier has broad application prospects in monolithic on-chip integrated photonic light sources and optical interconnection with few-mode fiber and/or silicon-based waveguide.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Natural Science Foundation of Zhejiang Province

Fundamental Research Funds for the Central Universities

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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