Zhang Yan, Xu Yinsheng, You Chenyang, Xu Dong, Tang Junzhou, Zhang Peiqing, Dai Shixun
Opt Express. 2017 Apr 17;25(8):8886-8895. doi: 10.1364/OE.25.008886.
Chemical stoichiometric Ge-As-S glasses were prepared, and their thermal properties, refractive index (n), optical bandgap, Raman gain, and femtosecond laser damage were examined. Results revealed that the n and density (ρ) of the glasses decreased as Ge concentration increased, whereas the bandgap and glass transition temperature (Tg) increased. The Raman gain coefficients (g) of the samples were calculated on the basis of spontaneous Raman scattering spectra. g decreased from 2.79 × 10 m/W for AsS to 1.06 × 10 m/W for GeS as Ge concentration increased. However, the smallest g was 100 times higher than that of fused silica (0.89 × 10 m/W). When these glasses were irradiated by a laser with a pulse width of 150 fs and a power of 33 mW at 3 μm, the damaged area and depth decreased and the damage threshold increased gradually as Ge concentration increased. Raman spectra and composition analysis indicated that surface oxidation probably occurred and sulfur gasified at a high laser power. Although the g decreased as Ge was added, the laser damage threshold of Ge-As-S glasses was higher than that of the AsS glass. Thus, these glasses are potential materials for Raman gain media.
制备了化学计量比的锗 - 砷 - 硫玻璃,并对其热性能、折射率(n)、光学带隙、拉曼增益和飞秒激光损伤进行了研究。结果表明,随着锗浓度的增加,玻璃的n和密度(ρ)降低,而带隙和玻璃化转变温度(Tg)升高。根据自发拉曼散射光谱计算了样品的拉曼增益系数(g)。随着锗浓度的增加,g从AsS的2.79×10 m/W降至GeS的1.06×10 m/W。然而,最小的g比熔融石英的g(0.89×10 m/W)高100倍。当用脉宽为150 fs、功率为33 mW的3μm激光照射这些玻璃时,随着锗浓度的增加,损伤面积和深度减小,损伤阈值逐渐增加。拉曼光谱和成分分析表明,在高激光功率下可能发生了表面氧化且硫气化。尽管随着锗的加入g降低,但锗 - 砷 - 硫玻璃的激光损伤阈值高于AsS玻璃。因此,这些玻璃是拉曼增益介质的潜在材料。