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Mechanistic studies for optical switching materials for space environments

机译:用于空间环境的光交换材料的力学研究

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Optical power limiters (OPLs) are nonlinear optical (NLO) devices that limit the amount of energy transmitted in an optical system. 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 OPLs for use in the space environment is due to the increasingly large number of space based missions and devices that require laser protection from laser beam is coming from, an enemy, misaligned laser in equipment, etc. 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. Recently, certain hyperbranched polymer-based composites containing OPL chromophores have been developed that offer high OPL performance and have been shown to function in a simulated + space environment. One novel high performance polymer material containing carbon nanotubes (CNT) covalently attached to the polymer host is promising. Preliminary light scattering measurements suggest that nonlinear scattering is not the primary mechanism for OPL performance.
机译:光功率限制器(OPL)是非线性光(NLO)设备,用于限制在光学系统中传输的能量。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。在太空环境中使用OPL的兴趣在于,越来越多的太空任务和设备需要来自激光器的激光防护,敌人,设备中的激光未对准等。温度和空间辐射引起的影响光学和电子材料中的传感器众所周知,它们会导致OPL功能中断,或者在最坏的情况下会导致传感器故障。近来,已经开发出某些包含OPL发色团的基于超支化聚合物的复合物,它们提供高的OPL性能,并且已经显示出在模拟+空间环境中起作用。一种新型的高性能聚合物材料包含共价附于聚合物主体的碳纳米管(CNT)。初步的光散射测量表明,非线性散射不是OPL性能的主要机制。

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