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Antenna-coupled infrared and millimeter-wave detectors: Fabrication, measurement and optimization.

机译:天线耦合红外和毫米波探测器:制造,测量和优化。

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摘要

Antenna-coupled detectors provide uncooled, cost-effective solutions for infrared and millimeter-wave imaging. This work describes the design, fabrication, measurement, and optimization of several types of antenna-coupled detectors for LWIR (8--12 mum) and 94 GHz radiation. Two types of millimeter-wave antenna-coupled detectors were fabricated and tested: a slot antenna coupled to a bolometer, and a patch antenna coupled to a SiC Schottky diode. Electromagnetic modeling of the antennas helped guide the design of antennas with better impedance matching to the detectors. Schottky diodes are discussed as detectors for millimeter-wave and infrared radiation, with the goal of increasing the cutoff frequency to allow infrared detection. The magnitude of response of antenna-coupled bolometric detectors to infrared radiation is affected by the thermal-conduction properties of the sensor structure. Two fabrication processes were developed to improve the thermal isolation of the antenna-coupled bolometer from its substrate. The first process creates a membrane beneath the device. Measured results show a factor of 100 increase in responsivity over an identical device without a membrane. The second process thermally isolates the device from its substrate by suspending the metallic structure in air. Several factors for optimization of infrared antenna-coupled detectors are investigated. The complex dielectric function of the metal from which the antenna is constructed can affect the performance of the device. The use of a ground plane and dielectric standoff layer beneath the antenna can increase the sensor responsivity. Dielectric material properties and thicknesses are considered, and incorporated in device simulations. Finally, a potential fabrication process is presented for via connections from the antenna-coupled detector through a ground plane to bond pads to mitigate the effect of bias lines on antenna behavior.
机译:天线耦合探测器可为红外和毫米波成像提供非制冷,经济高效的解决方案。这项工作描述了用于LWIR(8--12毫米)和94 GHz辐射的几种类型的天线耦合检测器的设计,制造,测量和优化。制造并测试了两种类型的毫米波天线耦合检测器:耦合到辐射热计的缝隙天线和耦合到SiC肖特基二极管的贴片天线。天线的电磁建模有助于指导天线设计,使其与探测器的阻抗匹配更好。肖特基二极管作为毫米波和红外辐射的检测器进行了讨论,其目的是增加截止频率以进行红外检测。天线耦合辐射热探测器对红外辐射的响应幅度受传感器结构的导热特性影响。开发了两种制造工艺来改善天线耦合测辐射热计与其基板的热隔离。第一个过程在设备下方创建了一个膜。测量结果表明,与没有膜的相同设备相比,响应度提高了100倍。第二种方法是通过将金属结构悬浮在空气中来将设备与其衬底热隔离。研究了优化红外天线耦合探测器的几个因素。构成天线的金属的复杂介电功能会影响设备的性能。在天线下方使用接地层和电介质隔离层可以提高传感器的响应度。考虑介电材料的特性和厚度,并将其纳入器件仿真中。最后,提出了一种潜在的制造过程,该过程用于从天线耦合检测器通过接地层到焊盘的通孔连接,以减轻偏置线对天线性能的影响。

著录项

  • 作者

    Middleton, Charles F., IV.;

  • 作者单位

    University of Central Florida.;

  • 授予单位 University of Central Florida.;
  • 学科 Engineering Electronics and Electrical.; Physics Optics.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 164 p.
  • 总页数 164
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;光学;
  • 关键词

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