[1] ZAKERY A, ELLIOTT S R. Optical properties and applications of chalcogenide glasses: a review[J]. Journal of Non-Crystalline Solids, 2003, 330(1/2/3): 1-12.
[4] ZHENG Y L, WANG W L, LI X C, et al. Polarity control of GaN epitaxial films grown on LiGaO2(001) substrates and its mechanism[J]. Physical Chemistry Chemical Physics, 2017, 19(32): 21467-21473.
[6] ZHENG Y L, WANG W L, LI X C, et al. Polarity-controlled GaN epitaxial films achieved via controlling the annealing process of ScAlMgO4 substrates and the corresponding thermodynamic mechanisms[J]. The Journal of Physical Chemistry C, 2018, 122(28): 16161-16167.
[7] WANG W L, LI Y, ZHENG Y L, et al. Lattice structure and bandgap control of 2D GaN grown on graphene/Si heterostructures[J]. Small, 2019, 15(14): 1802995.
[8] HILTON A R. Chalcogenide glasses for infrared optics[M]. New York: McGraw-Hill, 2010.
[12] GAO C X, ZHAO Z W, LI X H. Modeling of thermal stresses in elastic multilayer coating systems[J]. Journal of Applied Physics, 2015, 117(5): 055305.
[13] YANG Y H, WANG W L, ZHENG Y L, et al. Defect effect on the performance of nonpolar GaN-based ultraviolet photodetectors[J]. Applied Physics Letters, 2021, 118(5): 053501.
[16] STONEY G G. The tension of metallic films deposited by electrolysis[J]. Proceedings of the Royal Society of London, 1909, 82: 172-175.