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首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part B. Solid State Phenomena >Light-Induced Structural Relaxation and the Photoplastic Effect in Chalcogenide Glasses
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Light-Induced Structural Relaxation and the Photoplastic Effect in Chalcogenide Glasses

机译:硫属化物玻璃的光诱导结构弛豫和光塑性效应

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摘要

The combination of depth-sensing indentation and band-gap illumination has been used to study the photoplastic effect (the reversible influence of light on the flow stress, hardness, and plasticity) in chalcogenide glasses on a nanoscale. The prominent photoplasticity of thin As-Se films has been revealed through deviations in the shape of load-displacement curves during nanoindentation under light illumination from those ones which have been observed for the material in the darkness. The photoinduced changes in static mechanical properties such as nanohardness and elastic (Young's) modulus have been determined. The highest photoplasticity changes are achieved for As2oSego films while their photodarkening is the lowest.
机译:深度感应压痕和带隙照明的结合已用于研究硫族化物玻璃在纳米尺度上的光塑性效应(光对流变应力,硬度和可塑性的可逆影响)。通过在光照射下纳米压痕过程中载荷-位移曲线的形状与在黑暗中观察到的材料相比,As-Se薄膜的显着光塑性已经显示出来。已经确定了静态机械性能(如纳米硬度和弹性(杨氏)模量)的光诱导变化。 As2oSego薄膜具有最高的光塑性变化,而其光暗化则最低。

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