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Optical actuation of micromechanical tunneling structures with applications in spectrum analysis and optical computing

机译:微机械隧道结构的光致动及其在光谱分析和光学计算中的应用

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摘要

An efficient method for optically actuating a micromechanical cantilever is presented for the first time to our knowledge. Measurable responses can be obtained for moderate light sources if electron tunneling occurs between the cantilever tip and a metallic contact below it. The small deflection of the cantilever that is due to light pressure is sufficient then to produce large tunneling current variations. On the basis of this effect several applications such as a miniaturized spectrum analyzer and one-step optical computing units for addition intergration, or differentiation of one-dimensional or two-dimensional optical signals are presented.
机译:据我们所知,首次提出了一种光学驱动微机械悬臂的有效方法。如果在悬臂式尖端和其下方的金属触点之间发生电子隧穿,则对于中等强度的光源可以获得可测量的响应。由于轻压力导致的悬臂的小偏转足以产生大的隧穿电流变化。基于这种效果,提出了多种应用,例如小型化频谱分析仪和用于加法积分或一维或二维光信号微分的一步式光学计算单元。

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