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Controlling photoluminescent emission from polymer membranes through the creation of local deformation zones

机译:通过创建局部变形区来控制聚合物膜的光致发光

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Understanding and optimizing light propagation and extraction in light-emitting systems, such as fluorescent chemical sensors, is important for the production of more efficient sensors. We apply Monte Carlo ray tracing to model the effects of one-dimensional perturbations of film thickness on the luminescent emission (spatial, directional, spectral) of a freestanding transparent polymer film embedded with luminescent chromophores. Such modification not only enhances light extraction but also allows its location and direction to be controlled. Optimization of the deformation geometry allows for a 3.6-fold increase in intensity for a far-field detector. (C) 2016 Optical Society of America
机译:了解和优化发光系统(例如荧光化学传感器)中的光传播和提取,对于生产更高效的传感器很重要。我们应用蒙特卡洛射线追踪来模拟薄膜厚度的一维扰动对嵌入有发光发色团的独立透明聚合物薄膜的发光(空间,方向,光谱)的影响。这种修改不仅增强了光提取,而且允许控制其位置和方向。变形几何形状的优化使远场检测器的强度提高了3.6倍。 (C)2016美国眼镜学会

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