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首页> 外文期刊>Scientific reports. >Floating photonic crystals utilizing magnetically aligned biogenic guanine platelets
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Floating photonic crystals utilizing magnetically aligned biogenic guanine platelets

机译:利用磁性对齐的生物鸟嘌呤血小板漂浮的光子晶体

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Recently, structural colour formation and light control by accumulated guanine crystals were reported. However, the relationship between light interference by guanine platelets and light intensity in an individual platelet must be examined further. This study presents experimental evidence that the guanine crystal platelets of fishes aid in efficiently controlling the enhancement of light intensity based on light interference between platelets floating in a micro-space. In addition, a magnetic orientation technique enabled us to dynamically modulate the arrangement of platelets floating in water. A group orientation of the platelets under magnetic fields exhibited a distinct enhancement of the light interference between platelets present in the micro-space, and a two-fold enhancement of the reflected light intensity was achieved by comparing two arrangements of magnetically oriented platelets. The developed micro-optic light control method employing tiny platelets floating under aqueous liquid conditions is expected to facilitate the creation of tuneable optical micro-devices, e.g., a micro-‘search-light’ for individual cell analysis.
机译:最近,已经报道了结构颜色的形成和积累的鸟嘌呤晶体的光控制。但是,必须进一步检查鸟嘌呤血小板的光干扰与单个血小板的光强度之间的关系。这项研究提供了实验证据,表明鱼类的鸟嘌呤晶体血小板可以根据漂浮在微空间中的血小板之间的光干扰来帮助有效地控制光强度的增强。另外,磁性取向技术使我们能够动态调节漂浮在水中的血小板的排列。血小板在磁场下的成组取向表现出微空间中存在的血小板之间光干扰的明显增强,并且通过比较磁性取向的血小板的两种排列,实现了反射光强度的两倍增强。期望开发出的微光控光方法采用在水性液体条件下漂浮的微小血小板,可以促进可调谐光学微器件的创建,例如用于单个细胞分析的微“探照灯”。

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