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首页> 外文期刊>Terahertz Science and Technology, IEEE Transactions on >THz Imaging Using Uncooled Wideband Direct Detection Focal Plane Arrays
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THz Imaging Using Uncooled Wideband Direct Detection Focal Plane Arrays

机译:使用非冷却宽带直接检测焦平面阵列进行太赫兹成像

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摘要

In millimeter and submillimeter-wave radiometric imaging systems, a persistent goal is the increase in the speed of acquisition of the image while maintaining a high sensitivity. Typically, the highest sensitivity is achieved by cryogenically cooling the detectors, specifically in astronomical applications. However, for the purpose of low-cost imaging applications, it is desirable to operate at room temperature. Without cryogenically cooling, the electronic noise introduced by the detectors becomes dominant, making the detectors less sensitive. Resorting to detection architectures containing amplification circuitry might be impractical for implementation in large focal plane arrays (FPAs) fabricated in integrated technologies. This contribution derives the focal plane architecture that maximizes the imaging speed of radiometers operating at room temperature without using any amplification circuitry. It is shown that in such scenario a practical image acquisition speed can still be achieved when a very broad portion of the THz-band is exploited. Ultimately, the imaging speed is maximized when the FPA is undersampled, implying a tradeoff in the size of the optics. The analysis is substantiated by a case study with recently developed wideband leaky lens antenna feeds operating from 200 to 600 GHz.
机译:在毫米波和亚毫米波辐射成像系统中,一个持久的目标是在保持高灵敏度的同时提高图像的采集速度。通常,通过对探测器进行低温冷却来实现最高的灵敏度,特别是在天文应用中。然而,出于低成本成像应用的目的,期望在室温下操作。如果不进行低温冷却,检测器引入的电子噪声将占主导地位,从而使检测器的灵敏度降低。对于在集成技术中制造的大型焦平面阵列(FPA)中的实现,诉诸于包含放大电路的检测架构可能是不切实际的。这种贡献推导出了焦平面架构,该架构在不使用任何放大电路的情况下最大化了在室温下运行的辐射计的成像速度。结果表明,在这种情况下,当利用太赫兹频带的很大一部分时,仍然可以达到实用的图像采集速度。最终,当FPA采样不足时,成像速度将最大化,这意味着要在光学器件尺寸上进行权衡。一项案例研究证实了该分析,该案例研究使用了最近开发的工作在200至600 GHz的宽带泄漏透镜天线馈源。

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