Dispersion of two-photon absorption and nonlinear refraction in β -Ga2O3 from 350 to 515 nm

Author:

Tian Xiao12ORCID,Lu Hai-shuang2ORCID,Qian Tianxiang1,Zhou Wenfa3ORCID,Yang Junyi1,Yang Xifeng2,Ju Sheng14ORCID,Li Zhong-guo2ORCID,Song Yinglin13ORCID

Affiliation:

1. School of Physical Science and Technology, Soochow University 1 , Suzhou 215006, China

2. School of Electronic and Information Engineering, Changshu Institute of Technology 2 , Changshu 215500, China

3. Department of Physics, Harbin Institute of Technology 3 , Harbin 150001, China

4. School of Optical and Electronic Information, Suzhou City University 4 , Suzhou 215104, China

Abstract

We report the wavelength dependencies of the two-photon absorption coefficients β as well as the nonlinear refractive index n2 of undoped β-Ga2O3 single crystal in the spectral range 350–515 nm (0.51 < Ephoto/Eg < 0.75). Femtosecond Z-scan measurements show that n2 decreases monotonically toward the shortwave side, while the maximum value of n2 is 5.0 × 10−19 m2/W near half of the bandgap, Eg. Interestingly, a second upward trend in β was observed when the incident photon energy is larger than 0.6Eg, indicating the impact of additional inter-band transitions with higher energy. A higher-energy band-to-band transition around 6.0 eV was determined by both femtosecond nondegenerate two-photon absorption spectroscopy and ab initio calculations. Our results could provide guidance for designing nonlinear β-Ga2O3 photonic devices in the UV-visible spectral range.

Funder

National Natural Science Foundation of China

Qinglan Project of Jiangsu Province of China

Publisher

AIP Publishing

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