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Optical switching materials with high damage threshold for space environments

机译:对空间环境具有高破坏阈值的光交换材料

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摘要

Optical limiters are nonlinear optical devices that limit the amount of power or energy transmitted. They function through either optically-induced nonlinear absorption or refraction or a combination of the two. At low incident optical power or pulse energy, the transmission of the system is high enough to allow nominal operation of the system. At high incident optical power or pulse energy, the transmission decreases to protect sensitive components such as optical receivers or transmitters. The interest in optical power limiters (OPL) for use in the space environment is due to the increasingly large number of space based missions and applications that require laser protection. Temperature and space radiation-induced effects in optical and electronic materials are well known and they can cause disruption in OPL functions, or in the worst case, failure of the sensor. Therefore, designing materials that can withstand the space environment has been an area of intense exploration in recent years. Some of the best-performing optical limiters are materials containing chromophores that work via reverse saturable absorption, multiphoton absorption or nonlinear scattering mechanisms; however, such materials are difficult to prepare and have problems with long-term stability. In this paper, a novel type of polymeric OPL materials based on a multi-chromophore approach is described. The origin of the OPL properties in these materials and preliminary results of their effects of radiation on the OPL properties are discussed.
机译:光学限制器是非线性光学设备,可限制所传输的功率或能量。它们通过光诱导的非线性吸收或折射或两者的结合来发挥作用。在低入射光功率或脉冲能量下,系统的传输足够高以允许系统正常运行。在高入射光功率或脉冲能量下,传输率降低,以保护敏感组件,例如光接收器或发射器。对在空间环境中使用的光功率限制器(OPL)的关注是由于越来越多的需要激光保护的天基任务和应用所致。光学和电子材料中温度和空间辐射引起的影响是众所周知的,它们可能导致OPL功能中断,或者在最坏的情况下会导致传感器故障。因此,近年来,设计出能够承受空间环境的材料成为了研究的热点。一些性能最好的光学限制器是含有发色团的材料,它们通过反向饱和吸收,多光子吸收或非线性散射机制起作用。但是,这种材料难以制备并且存在长期稳定性的问题。在本文中,描述了一种基于多发色团方法的新型聚合物OPL材料。讨论了这些材料中OPL性能的起源以及其辐射对OPL性能的影响的初步结果。

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