Tverjanovich Andrey, Khomenko Maxim, Bereznev Sergei, Fontanari Daniele, Sokolov Anton, Usuki Takeshi, Ohara Koji, Le Coq David, Masselin Pascal, Bychkov Eugene
Institute of Chemistry, St. Petersburg State University, 198504 St. Petersburg, Russia.
Phys Chem Chem Phys. 2020 Nov 18;22(44):25560-25573. doi: 10.1039/d0cp04697c.
Phase-change materials based on tellurides are widely used for optical storage (DVD and Blu-ray disks), non-volatile random access memories and for development of neuromorphic computing. Narrow-gap tellurides are intrinsically limited in the telecom spectral window, where materials having a wider gap are needed. Here we show that gallium sulfide GaS thin films prepared by pulsed laser deposition reveal good transparency from the visible to the mid-IR spectral range with optical gap Eg = 2.34 eV, high refractive index nR = 2.50 over the 0.8 ≤ λ ≤ 2.5 μm range and, unlike canonical chalcogenide glasses, the absence of photo-structural transformations with a laser-induced peak power density damage threshold above 1.4 TW cm-2 at 780 nm. The origin of the excellent damage threshold under a high-power laser and UV light irradiation resides in the rigid tetrahedral structure of vitreous GaS studied by high-energy X-ray diffraction and Raman spectroscopy and supported by first-principles simulations. The average local coordination number appears to be m = 3.44, well above the optimal connectivity, 2.4 ≤ m ≤ 2.7, and the total volume of microscopic voids and cavities is 34.4%, that is, lower than for the vast majority of binary sulfide glasses. The glass-crystal phase transition in gallium sulfide thin films may be accompanied by a drastic change in the nonlinear optical properties, opening up a new dimension for memory applications in the visible to mid-IR spectral ranges.
基于碲化物的相变材料广泛应用于光存储(DVD和蓝光光盘)、非易失性随机存取存储器以及神经形态计算的开发。窄带隙碲化物在电信光谱窗口中存在固有局限性,而在此窗口需要具有更宽带隙的材料。在此,我们表明通过脉冲激光沉积制备的硫化镓GaS薄膜在从可见光到中红外光谱范围内具有良好的透明度,其光学带隙Eg = 2.34 eV,在0.8≤λ≤2.5μm范围内具有高折射率nR = 2.50,并且与典型的硫族化物玻璃不同,在780 nm处激光诱导的峰值功率密度损伤阈值高于1.4 TW cm-2时不存在光结构转变。在高功率激光和紫外光照射下具有优异损伤阈值的原因在于通过高能X射线衍射和拉曼光谱研究并得到第一性原理模拟支持的玻璃态GaS的刚性四面体结构。平均局部配位数似乎为m = 3.44,远高于最佳连通性2.4≤m≤2.7,并且微观空隙和空洞的总体积为34.4%,即低于绝大多数二元硫化物玻璃。硫化镓薄膜中的玻璃 - 晶体相变可能伴随着非线性光学性质的急剧变化,为可见光到中红外光谱范围内的存储应用开辟了一个新的维度。