首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Coupled-mode theory for infrared and submillimeter wave detectors
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Coupled-mode theory for infrared and submillimeter wave detectors

机译:红外和亚毫米波探测器的耦合模式理论

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摘要

We present a comprehensive, spatiotemporal, modal theory of submillimeter-wave and far-infrared power detectors. The theory is based on the contraction of the coherence tensor of the light with another coherence tensor that incorporates all of the physics of the detector. The theory is extremely general and applies to detectors of any bandwidth, with light in any state of polarization and spatiotemporal coherence. The theory applies equally to quasi-monochromatic and pulsed systems. We show that the tensor associated with the detector is a measureable quantity and outline a procedure for its experimental determination. We derive expressions for the statistical properties of a detector's output, including the correlations between the outputs of different detectors, say, in an array or interferometer. The theory provides a clear conceptual understanding of how any general detector couples to the modes of an optical system and thereby provides a powerful and flexible way of modeling the behavior of detectors and instruments.
机译:我们提出了一种亚毫米波和远红外功率探测器的综合,时空模态理论。该理论基于光的相干张量与另一个包含检测器所有物理特性的相干张量的收缩。该理论非常笼统,适用于任何带宽,任何偏振状态和时空相干状态的光检测器。该理论同样适用于准单色和脉冲系统。我们显示与检测器相关的张量是可测量的量,并概述了其实验确定的过程。我们推导了检测器输出的统计特性的表达式,包括阵列或干涉仪中不同检测器的输出之间的相关性。该理论为任何通用检测器如何耦合到光学系统的模式提供了清晰的概念性理解,从而为建模检测器和仪器的行为提供了强大而灵活的方式。

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