Laser & Optoelectronics Progress, Volume. 59, Issue 15, 1516002(2022)
Recent Applications of Glass Genetic Engineering in Laser Glasses and Other Advanced Optical Glasses
Fig. 2. Physics based approaches. (a) Broken ergodicity theory of glassy state[45]; (b) CRN model of SiO2 glass and first-principle calculation[46]; (c) genetic but topologically ordered and topologically disordered networks made of rigid triangles[47]; (d) phase diagrams of glasses structure[48-49]
Fig. 4. Approaches combining physics and experience. (a) Phase separation of Tb3+ doped fluoroaluminosilicate glass using MD simulation[87]; (b) structural and electronic properties of aluminoborosilicate glass using AIMD[92]; (c) dissolution kinetics of silicate glasses by topology-informed machine learning[93]; (d) ML prediction model by SHAP framework[94]
Fig. 5. Experimental results. (a) Effects of three different topological structure on luminescence properties of Bi doped laser glass[97]; (b) calculation of properties of Tm3+ doped BaO-GeO2 using phase diagram approach[100]; (c) statistical modeling of the relationship between luminescence properties and structural units of Yb3+-doped phosphate laser glass with different concentrations of GeO2[104]; (d) glass selection charts based on ML model[63]; (e) reconstruction process of CdSe quantum dot-glass interface by AIMD[105]
Fig. 6. Development of optical glass modeling, including empirical summary, theoretical description, computational prediction[105] , and data-intensive applications
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Guoping Dong, Tianze Wan, Minbo Wu, Qiwen Pan, Jianrong Qiu, Zhongmin Yang. Recent Applications of Glass Genetic Engineering in Laser Glasses and Other Advanced Optical Glasses[J]. Laser & Optoelectronics Progress, 2022, 59(15): 1516002
Category: Materials
Received: May. 24, 2022
Accepted: Jun. 15, 2022
Published Online: Aug. 2, 2022
The Author Email: Guoping Dong (dgp@scut.edu.cn)