主题演讲3:用于先进太赫兹成像和传感的等离子体太赫兹光电子学

M. Jarrahi
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引用次数: 0

摘要

在本次演讲的第一部分,我将概述太赫兹波在化学鉴定、材料表征、生物医学传感和诊断方面的独特应用,并描述现有太赫兹传感器的状态。在演讲的第二部分,我将介绍一项改变游戏规则的技术,该技术可以实现高性能,低成本和紧凑的太赫兹光谱和成像系统,用于各种应用。更具体地说,我将介绍新一代光驱动太赫兹源和探测器,与现有技术相比,它们提供了三个数量级更高的太赫兹辐射功率水平和两个数量级更高的太赫兹探测灵敏度水平。这种跨越式的性能增强是通过将激光通过专门设计的金属纳米结构进入器件的活性区域来实现的,从而增强了纳米尺度上光与物质的相互作用。此外,该技术针对近红外光波长的操作进行了优化,在近红外光波长,非常高性能,紧凑且具有成本效益的商业光源,为紧凑和低成本的太赫兹传感器铺平了道路,可以为医学成像和诊断,大气传感,药品质量控制和安全筛查系统等提供许多机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Keynote speech 3: Plasmonic terahertz optoelectronics for advanced terahertz imaging and sensing
In the first part of this talk, I will give an overview of the unique applications of terahertz waves for chemical identification, material characterization, biomedical sensing and diagnostics and describe the state of the existing terahertz sensors. In the second part of the talk, I will introduce a game changing technology that enables high performance, low cost, and compact terahertz spectroscopy and imaging systems for various applications. More specifically, I will introduce a new generation of optically driven terahertz sources and detectors that offer three orders of magnitude higher terahertz radiation power levels and two orders of magnitude higher terahertz detection sensitivity levels compared to the existing technologies. This leap-frog performance enhancement is achieved by funneling the laser light through specifically engineered metallic nanostructures into the device active area, enhancing light matter interaction at nanoscale. Moreover, this technology is optimized for operation at near infrared optical wavelengths, where very high performance, compact and cost-effective optical sources are commercially available, paving the way to compact and low-cost terahertz sensors that could offer numerous opportunities for e.g., medical imaging and diagnostics, atmospheric sensing, pharmaceutical quality control, and security screening systems.
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