采用小波降噪信号处理方法对不同材料结构和尺寸的微球透镜增强的3μm-5μm MWIR应变层超晶格(SLS)光电探测器进行整体噪声-信号(NSR)轮廓提取、表征和比较

D. Megherbi, G. Paradiso, I. Vakil, N. Limberopoulos, A. Urbas
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引用次数: 4

摘要

MWIR探测器由于其在目标识别、生物成像、医疗和国防等民用和军事领域的重要性和高可行性而受到广泛关注。获得合理的MWIR高信噪比(SNR)分布是实现MWIR光探测器高灵敏度性能的关键。经典的红外光电探测器信噪比模型是有限的,因为它没有反映所有物理因素的建模,包括探测器环境源引起不希望的噪声。一般来说,需要更好的经验方法来准确地估计和提取检测器集成的不完美噪声源。在本文中,我们提出并讨论了一种基于非参数小波的去噪信号处理方法,用于准确提取、表征和比较探测器噪声源的整体组合效应,包括光谱制造缺陷噪声、电子测试设备缺陷噪声和微球透镜材料制造/对准缺陷噪声等。11个不同材料结构/尺寸的微球透镜增强的3μm-5μm MWIR InAS/GaSb应变层超晶格(SLS)单光电探测器。结合采集到的光谱FTIR数据和基于小波去噪的探测器提取的NSR,结果表明:在目标3μm-5μm MWIR波长波段,考虑尺寸为40μm的SLS光电探测器的噪信比(NSR)降低(提高)约71%(透镜增强与无透镜增强的NSR值之差除以无透镜增强的NSR)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A wavelet de-noising signal processing method for overall noise-to-signal (NSR) profile extraction, characterization and comparison of 3μm-5μm MWIR strained-layer super-lattice (SLS) photo-detectors enhanced with microsphere lenses of different material structures and sizes
MWIR detectors have received a lot of attention due to their importance and high viability in many civilian and military applications, such as target identification, bio-imaging, medical field, and defense. One crucial component in achieving high-sensitivity performance in MWIR photo-detectors, is obtaining reasonable MWIR high detector signal-to-noise ratio (SNR) profiles. The classical IR photo-detector SNR model is limited as it does not reflect modeling of all physical factors, including detector environment sources causing undesired noise. In general, there is a need for better empirical methods to accurately estimate and extract the detector integrated-sources of imperfection noise. In this paper we present and discuss a non-parametric wavelet-based de-noising signal processing method for accurate extraction, characterization and comparison of the overall combined effects of detector sources of noise, including spectral fabrication imperfection noise, electronics testing equipment imperfection noise, and microsphere lens material fabrication/alignment imperfection noise, among others, of eleven (11) 3μm-5μm MWIR InAS/GaSb strained-layer Superlattice (SLS) single photodetectors enhanced with microsphere-lenses of different material structures/sizes. With the collected spectral FTIR data considered and the detector wavelet-denoising-based extracted NSR, the results show that there is a decrease (improvement) of about 71 % (difference between lens-enhanced and no-lens-enhanced NSR values divided by no-lens-enhanced NSR) in the noise-to-signal ratio (NSR) of the SLS photodetector of size 40μm and enhanced with a microsphere-lens sapphire of size 300μm in the targeted 3μm-5μm MWIR wavelength-band considered.
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