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Spiral Antenna-Coupled Microbridge Structures for THz Application

机译:太赫兹应用的螺旋天线耦合微桥结构

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摘要

Bolometer sensor is a good candidate for THz imaging due to its compact system, low cost, and wideband operation. Based on infrared microbolometer structures, two kinds of antenna-coupled microbridge structures are proposed with different spiral antennas: spiral antenna on support layer and spiral antenna with extended legs. Aiming at applications in detection and imaging, simulations are carried out mainly for optimized absorption at 2.52 THz, which is the radiation frequency of far-infrared CO2 lasers. The effects of rotation angle, line width, and spacing of the spiral antenna on THz wave absorption of microbridge structures are discussed. Spiral antenna, with extended legs, is a good solution for high absorption rate at low absorption frequency and can be used as electrode lead simultaneously for simplified manufacturing process. A spiral antenna-coupled microbridge structure with an absorption rate of more than 75% at 2.52 THz is achieved by optimizing the structure parameters. This research demonstrates the use of different spiral antennas for enhanced and tunable THz absorption of microbridge structures and provides an effective way to fabricate THz microbolometer detectors with great potential in the application of real-time THz imaging.
机译:由于其紧凑的系统,低成本和宽带操作,Bolometer传感器非常适合THz成像。基于红外微测辐射热计结构,提出了两种具有不同螺旋天线的天线耦合微桥结构:支撑层螺旋天线和加长支腿螺旋天线。针对检测和成像中的应用,主要进行模拟以优化2.52 THz的吸收,这是远红外CO2激光器的辐射频率。讨论了旋转角度,线宽和螺旋天线间距对微桥结构太赫兹波吸收的影响。带有延长腿的螺旋天线是在低吸收频率下实现高吸收率的良好解决方案,并且可以同时用作电极引线以简化制造过程。通过优化结构参数,实现了在2.52 THz处吸收率超过75%的螺旋天线耦合微桥结构。这项研究证明了使用不同的螺旋天线来增强和调节微桥结构的太赫兹吸收,并为制造具有巨大潜力的太赫兹微辐射热检测器提供了一种有效的方法,可用于实时太赫兹成像。

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