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Statistical adaptive sensing by detectors with spectrally overlapping bands

机译:具有频谱重叠频段的探测器的统计自适应感测

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摘要

It has recently been reported that by using a spectral-tuning algorithm, the photocurrents of multiple detectors with spectrally overlapping responsivities can be optimally combined to synthesize, within certain limits, the response of a detector with an arbitrary responsivity. However, it is known that the presence of noise in the photocurrent can degrade the performance of this algorithm significantly, depending on the choice of the responsivity spectrum to be synthesized. We generalize this algorithm to accommodate noise. The results are applied to quantum-dot mid-infrared detectors with bias-dependent spectral responses. Simulation and experiment are used to show the ability of the algorithm to reduce the adverse effect of noise on its spectral-tuning capability.
机译:最近已经报道,通过使用光谱调谐算法,具有光谱重叠的响应度的多个检测器的光电流可以被最佳地组合以在一定的限度内合成具有任意响应度的检测器的响应。但是,众所周知,光电流中存在噪声会大大降低该算法的性能,具体取决于要合成的响应谱的选择。我们推广该算法以适应噪声。该结果将应用于具有偏置相关光谱响应的量子点中红外探测器。仿真和实验表明了该算法减少噪声对其频谱调谐能力的不利影响的能力。

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