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Photoreprogrammable dual-function grating based on photochromism and selective metal deposition

机译:基于光致变色和选择性金属沉积的光可重编程双功能光栅

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摘要

We introduce photoreprogrammable dual-function gratings, which show different diffraction in transmission and reflection. Parallel metal lines on the photochromic diarylethene (DAE) surface were prepared by selective metal deposition, enabling one-dimensional diffraction in transmission and reflection. Then, another isomerization pattern was programmed on the DAE layer by light irradiation. This grating generated unique diffraction: one-dimensional diffraction in the reflection but two-dimensional diffraction in the transmission, and a dual-function grating was achieved. This programmed state on the DAE layer could be erased by UV irradiation and could be reprogrammed to generate different diffraction by visible laser scanning. This result shows the great potential of the photoreprogrammable dual-function grating as a key element in various future optical devices and systems.
机译:我们介绍了可光编程的双功能光栅,该光栅在透射和反射方面表现出不同的衍射。光致变色二芳基乙烯(DAE)表面上的平行金属线是通过选择性金属沉积制备的,从而可以在透射和反射中进行一维衍射。然后,通过光照射在DAE层上编程另一种异构化图案。该光栅产生独特的衍射:反射中为一维衍射,而透射中为二维衍射,从而获得了双功能光栅。 DAE层上的此已编程状态可以通过UV辐射擦除,也可以通过可见激光扫描重新编程以生成不同的衍射。该结果表明,光可重编程双功能光栅作为各种未来光学设备和系统中的关键元件具有巨大的潜力。

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