MXene Ti3C2Tx saturable absorber for passively Q-switched mid-infrared laser operation of femtosecond-laser–inscribed Er:Y2O3 ceramic channel waveguide

Author:

Tian Qingyu1,Yin Peng2,Zhang Teng1,Zhou Lunbin1,Xu Bin1,Luo Zhengqian1,Liu Hongliang3,Ge Yanqi2,Zhang Jian4,Liu Peng5,Xu Xiaodong5

Affiliation:

1. Department of Electronic Engineering, Xiamen University, Xiamen 361005, China

2. College of Optoelectronic Engineering, Shenzhen University, Shenzhen 518060, China

3. Institute of Modern Optics, Nankai University, Tianjin 300350, China

4. Key Laboratory of Transparent and Opto-functional Inorganic Materials, Shanghai Institute of Ceramics, Chinese Academy of Sciences, No. 588 Heshuo Road, Shanghai 201899, China

5. Jiangsu Key Laboratory of Advanced Laser Materials and Devices, School of Physics and Electronic Engineering, Jiangsu Normal University, Xuzhou 221116, China

Abstract

AbstractWe report on an Er:Y2O3 ceramic channel waveguide laser operating at continuous-wave and passively Q-switched regimes, for the first time to the best of our knowledge. The Er:Y2O3 ceramic channel waveguide has been fabricated by a femtosecond laser direct-writing technique. The maximum output power reached 123.5 mW in continuous-wave mode with a slope efficiency of about 21%, and the lasing behavior has been found simultaneously at 2710.28, 2716.76, and 2723.18 nm. We have further fabricated an MXene Ti3C2Tx saturable absorber mirror to operate the Er:Y2O3 waveguide in passively Q-switched regime. At the same time, property of the MXene Ti3C2Tx saturable absorber has been characterized, and nonlinear saturable absorption of the saturable absorber has also been measured. The average output power is about 67.6 mW, and the shortest pulse width is about 58.1 ns. This work indicates that femtosecond laser direct writing is a reliable technique for processing mid-infrared ceramic waveguides, and MXene Ti3C2Tx is promising for operating pulsed mid-infrared lasers.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Fujian Province of China

International Collaborative Laboratory of 2D Materials for Optoelectronics Science and Technology

Fundamental Research Funds for the Central Universities

Publisher

Walter de Gruyter GmbH

Subject

Electrical and Electronic Engineering,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials,Biotechnology

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