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谭智勇, 曹俊诚. 太赫兹量子器件光电测试技术与系统[J]. 物理, 2022, 51(5): 328-336. DOI: 10.7693/wl20220505
引用本文: 谭智勇, 曹俊诚. 太赫兹量子器件光电测试技术与系统[J]. 物理, 2022, 51(5): 328-336. DOI: 10.7693/wl20220505
TAN Zhi-Yong, CAO Jun-Cheng. Photoelectric measurement based on terahertz quantum devices and systems[J]. PHYSICS, 2022, 51(5): 328-336. DOI: 10.7693/wl20220505
Citation: TAN Zhi-Yong, CAO Jun-Cheng. Photoelectric measurement based on terahertz quantum devices and systems[J]. PHYSICS, 2022, 51(5): 328-336. DOI: 10.7693/wl20220505

太赫兹量子器件光电测试技术与系统

Photoelectric measurement based on terahertz quantum devices and systems

  • 摘要: 光电测试技术是太赫兹辐射研究的重要基础技术。文章首先介绍两种太赫兹量子器件的工作原理和最新进展,随后主要介绍太赫兹量子器件在脉冲激光功率测量技术、快速调制与直接探测技术、激光偏振转换与测量以及光纤损耗测量技术及相关测试系统中的应用。最后总结基于太赫兹量子器件的光电测试技术的特点和优势,并对未来的发展进行展望。

     

    Abstract: Photoelectric measurement is an important basic technology in studies of terahertz radiation. This paper first describes the principle of operation of two terahertz quantum devices and their latest development, followed by an introduction to their applications in pulsed light power measurement, fast modulation and direct detection of terahertz light, optical polarization conversion and measurement, terahertz fiber loss measurement, and related test systems. Finally, the characteristics and advantages of photoelectric measurement techniques based on terahertz quantum well devices are summarized, and future developments assessed.

     

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