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Reversible Nanocontraction and Dilatation in a Solid Induced by Polarized Light

机译:偏振光在固体中的可逆纳米收缩和膨胀

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摘要

Reversible, controllable optical nanocontraction and dilatation in a chalcogenide glass film was induced by polarized light, and a direct correlation of this optomechanical effect with the reversible optical-induced optical anisotropy (dichroism) also exhibited by the chalcogenide glass was observed. A microscopic model of the photoinduced, reversible structural phenomenon responsible for the optomechanical behavior is presented. The ability to induce an anisotropic optomechanical effect could form the basis of a number of applications, including polarized light-dependent optical nanoactuators, optomechanical diaphragm micropumps, and even motors driven by polarized light.
机译:偏振光在硫族化物玻璃膜中引起可逆的,可控的光学纳米收缩和膨胀,并且观察到该光机械效应与硫族化物玻璃还表现出可逆的光学诱导的光学各向异性(二向色性)。提出了负责光机械行为的光致,可逆结构现象的微观模型。诱发各向异性光机械效应的能力可以构成许多应用的基础,包括偏振光相关的光学纳米致动器,光机械膜片微型泵,甚至是由偏振光驱动的电机。

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