Photoinduced phenomena in chalcogenide glasses and their application in optoelectronics

A. Andriesh
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Abstract

The interaction of radiation with vitreous materials provokes irreversible and reversible changes of atomic and electronic structures. These changes in their turn manifest themselves in the experiment through changes of mechanical, thermal, optical, photoelectrical and other characteristics. Under the radiation influence the structure of vitreous materials changes, new defects appears, film crystallization or amorphization takes place, phase transition or transition from one unstable state to another. It is evident that such changes radically influence the optical and photoelectrical properties of the material: the refraction index and other optical material constants change; reflection and absorption of light as well as photoelectric parameters. Of no less importance is the appearance of new possibilities for application of vitreous materials as optical and photoelectrical recording media, fibers and planar waveguides, active and passive elements of optoelectronics, including nonlinear elements and sensors of different physical quantities. This paper covers a survey of works dedicated to the research of various photoinduced phenomena in bulk, thin-film and fiber samples of chalcogenide glassy semiconductors.
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硫系玻璃的光致现象及其在光电子学中的应用
辐射与玻璃材料的相互作用引起原子和电子结构的不可逆和可逆的变化。这些变化又通过力学、热学、光学、光电等特性的变化在实验中表现出来。在辐射作用下,玻璃材料的结构发生变化,出现新的缺陷,发生薄膜结晶或非晶化,发生相变或从一种不稳定状态过渡到另一种不稳定状态。很明显,这些变化从根本上影响了材料的光学和光电特性:折射率和其他光学材料常数发生变化;光的反射和吸收以及光电参数。同样重要的是,玻璃材料在光学和光电记录介质、光纤和平面波导、光电子的有源和无源元件,包括非线性元件和不同物理量的传感器等方面的应用出现了新的可能性。本文综述了硫系玻璃半导体的体、薄膜和光纤样品中各种光致现象的研究工作。
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