Inkjet Printing of Yb:YAG Transparent Ceramic Planar Waveguide Laser Gain Medium

Author:

Wang Haoran12,Gao Wenlan12ORCID,Zhang Jian12,Ma Jie3,Ji Haohao12,Xie Mengmeng4,Mao Xiaojian12,Wang Shiwei12,Wang Lei5,Gao Yuan5

Affiliation:

1. State Key Laboratory of High Performance Ceramics and Superfine Microstructure Shanghai Institute of Ceramics Chinese Academy of Sciences Shanghai 200050 China

2. Center for Materials Science and Optoelectronics Engineering University of Chinese Academy of Sciences Beijing 100049 China

3. School of Physics and Electronic Engineering Jiangsu Normal University Xuzhou Jiangsu 221116 China

4. School of Mechanical Engineering Jiangnan University Wuxi Jiangsu 214122 China

5. Qian Xuesen Laboratory of Space Technology China Academy of Space Technology (CAST) Beijing 100098 China

Abstract

Herein, a YAG/10 at% Yb:YAG/YAG transparent ceramic planar waveguide (PWG) gain medium has been molded via inkjet printing and dry pressing molding. The composition and rheological property of ink are optimized along with the printing process to enhance the printing accuracy and quality. The PWG has dimensions of 13.5 × 8.0 × 1.8 mm3, while the thickness of the core Yb:YAG layer is ≈190 μm. The in‐line transmittance of the PWG reaches 81.7% at 1030 nm, and the average grain size is ≈2.3 μm. The diffusion characteristics of Yb ions across the interface between the cladding YAG layer and the core Yb:YAG layer are investigated by calculating the diffusion coefficient and the mean diffusion distance of 172Yb ions. The Yb:YAG PWG oscillator, which is pumped from a single end by a 940 nm laser diode, produces continuous wave laser at a wavelength of 1030 nm and exhibits the highest power (3.8 W) and highest absorbed–output slope efficiency (64.6%).

Funder

Excellent Young Scientists Fund

National Defense Basic Scientific Research Program of China

Publisher

Wiley

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