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On-Chip Integration of Photodetector and Sensor: A Multimodal Photonic Device for Sensing Applications

机译:片上集成光电探测器和传感器:用于传感应用的多峰光子设备

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摘要

In this paper, we present the design and development of a novel miniaturized multimodal photonic sensor, which can be configured dually as a photodetector in the absorptive mode and as a pyro-detector in the photonic sensor mode. In this paper, we have fabricated a polyvinyl alcohol (PVA) photoactive layer-based MEMS structure and analysed the effect of effective inter-electrode separation on the photoactive area of the photoactive film using the four quadrant metal-semiconductor polymer-metal (MSM) design on the photoresponsivity of this device in terms of photoconductive and the pyroelectric responses. Our analysis reveals that the interdigitated electrode configuration is best suited for photoconductive response while the cross-electrode configuration with large effective inter-electrode spacing is advantageous for pyroelectric measurement in the infrared region. Here, the unique design of this device offers the choice of electrode configurations that enables the utility of this device in various regions of the electromagnetic spectrum. In this regard, we demonstrate the optical detection of localized surface plasmon resonance of immobilized gold nanoparticle monolayer in the visible region, employing the absorptive mode and the detection of the spectroscopic signature of RDX and TNT molecules ( 134 μg /cm 2) in the midinfrared region using photonic sensor mode. This paper paves a way for designing a low-cost PVA-based miniaturized sensor architectures with huge potential for on-chip real-time detections in various fields of scientific and commercial applications.
机译:在本文中,我们介绍了一种新型的小型多模态光子传感器的设计和开发,该传感器可双重配置为吸收模式下的光电探测器和光子传感器模式下的热释探测器。在本文中,我们制造了基于聚乙烯醇(PVA)光敏层的MEMS结构,并使用四象限金属-半导体聚合物-金属(MSM)分析了有效电极间分离对光敏膜光敏区域的影响。在光电导和热电响应方面设计该器件的光响应性。我们的分析表明,交叉指状电极配置最适合光电导响应,而有效电极间间距大的交叉电极配置则有利于红外区域的热电测量。在此,该设备的独特设计提供了电极配置的选择,使该设备可以在电磁频谱的各个区域中使用。在这方面,我们展示了采用吸收模式和中红外区RDX和TNT分子(134μg/ cm 2)的光谱特征检测,对可见光区域中固定化的金纳米粒子单层的局部表面等离子体共振的光学检测。区域使用光子传感器模式。本文为设计低成本,基于PVA的小型传感器架构铺平了道路,该架构在科学和商业应用的各个领域中都具有巨大的片上实时检测潜力。

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