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Superstructures of chiral nematic microspheres as all-optical switchable distributors of light

机译:手性向列微球的上层结构作为光的全光可切换分配器

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摘要

Light technology is based on generating, detecting and controlling the wavelength, polarization and direction of light. Emerging applications range from electronics and telecommunication to health, defence and security. In particular, data transmission and communication technologies are currently asking for increasingly complex and fast devices, and therefore there is a growing interest in materials that can be used to transmit light and also to control the distribution of light in space and time. Here, we design chiral nematic microspheres whose shape enables them to reflect light of different wavelengths and handedness in all directions. Assembled in organized hexagonal superstructures, these microspheres of well-defined sizes communicate optically with high selectivity for the colour and chirality of light. Importantly, when the microspheres are doped with photo-responsive molecular switches, their chiroptical communication can be tuned, both gradually in wavelength and reversibly in polarization. Since the kinetics of the "on" and "off" switching can be adjusted by molecular engineering of the dopants and because the photonic cross-communication is selective with respect to the chirality of the incoming light, these photo-responsive microspheres show potential for chiroptical all-optical distributors and switches, in which wavelength, chirality and direction of the reflected light can be controlled independently and reversibly.
机译:光技术基于生成,检测和控制光的波长,偏振和方向。新兴应用范围从电子和电信到健康,国防和安全。特别地,数据传输和通信技术当前正在要求越来越复杂和快速的设备,因此,人们对可以用于传输光并且还可以控制光在空间和时间上的分布的材料的兴趣与日俱增。在这里,我们设计了手性向列微球,其形状使它们能够在各个方向上反射不同波长和手性的光。这些尺寸确定的微球以有组织的六边形上层结构组装,以光学方式进行通信,对光的颜色和手性具有很高的选择性。重要的是,当微球中掺杂有光响应分子开关时,它们的手性通讯可以在波长上逐渐改变,并且在偏振方向上可逆地改变。由于可以通过掺杂剂的分子工程来调节“开”和“关”切换的动力学,并且由于光子交叉通信相对于入射光的手征性是选择性的,因此这些光响应性微球显示出用于手性的潜力。全光分配器和开关,其中反射光的波长,手征性和方向可以独立和可逆地控制。

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