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Optimization of complex surface plasmon modulation using bi-material cantilever for the integration of the red, green, and blue complex modulation

机译:使用双材料悬臂优化复杂表面等离子体激元调制,以整合红色,绿色和蓝色复杂调制

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摘要

A bi-material cantilever based surface plasmon modulation structure is proposed. It is shown that the mechanical actuation of bi-material cantilever by changing temperature can facilitate amplitude modulation. More specific, the issues of scaling-down and integration of the red, green, and blue are discussed. This work can be expanded to the complex modulation structure which is already demonstrated in our previous work. The optimization would be fit for the integration of the red, green, and blue complex modulation structures which can potentially lead to the development of full-color complex spatial light modulator.
机译:提出了一种基于双材料悬臂的表面等离子体激元调制结构。结果表明,通过改变温度对双材料悬臂梁进行机械驱动可以促进振幅调制。更具体地说,讨论了按比例缩小和集成红色,绿色和蓝色的问题。这项工作可以扩展到复杂的调制结构,这已经在我们之前的工作中得到了证明。该优化将适合于红色,绿色和蓝色复杂调制结构的集成,这有可能导致全色复杂空间光调制器的发展。

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