首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Optical theory of partially coherent thin-film energy-absorbing structures for power detectors and imaging arrays
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Optical theory of partially coherent thin-film energy-absorbing structures for power detectors and imaging arrays

机译:用于功率检测器和成像阵列的部分相干薄膜能量吸收结构的光学理论

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摘要

Free-space power detectors often have energy absorbing structures comprising multilayer systems of patterned thin films. We show that for any system of interacting resistive films, the expectation value of the absorbed power is given by the contraction of two tensor fields: one describes the spatial state of coherence of the incoming radiation, the other the state of coherence to which the detector is sensitive. Equivalently, the natural modes of the optical field scatter power into the natural modes of the detector. We describe a procedure for determining the amplitude, phase, and polarization patterns of a detector's optical modes and their relative responsivities. The procedure gives the state of coherence of the currents flowing in the system and leads to important conceptual insights into the way the pixels of an imaging array interact and extract information from an optical field.
机译:自由空间功率检测器通常具有包括图案化薄膜的多层系统的能量吸收结构。我们表明,对于任何与电阻膜相互作用的系统,吸收功率的期望值由两个张量场的收缩给出:一个描述入射辐射的相干性的空间状态,另一个描述检测器与之相干的状态很敏感。等效地,光场的自然模式将功率散射到检测器的自然模式中。我们描述了确定检测器的光学模式及其相对响应度的幅度,相位和偏振模式的过程。该过程给出了系统中流过的电流的相干状态,并导致对成像阵列的像素进行交互并从光场提取信息的方式产生了重要的概念见解。

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