Toward remote sensing with broadband terahertz waves

被引:8
|
作者
Clough B. [1 ]
Zhang X.-C. [2 ,3 ]
机构
[1] Rensselaer Polytechnic Institute, Troy, NY
[2] The Institute of Optics, University of Rochester, Rochester, NY
[3] Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan
基金
美国国家科学基金会;
关键词
acoustic; air; fluorescence; plasma; terahertz;
D O I
10.1007/s12200-014-0397-3
中图分类号
学科分类号
摘要
This paper studies laser air-photonics used for remote sensing of short pulses of electromagnetic radiation at terahertz frequency. Through the laser ionization process, the air is capable of generating terahertz field strengths greater than 1 MV/cm, useful bandwidths over 100 terahertz, and highly directional emission patterns. Following ionization and plasma formation, the emitted plasma acoustic or fluorescence can be modulated by an external terahertz field to serve as omnidirectional, broadband, electromagnetic sensor. These results help to close the "terahertz gap" once existing between electronic and optical frequencies, and the acoustic and fluorescence detection methodologies developed provide promising new avenues for extending the useful range of terahertz wave technology. Our experimental results indicate that by hearing the sound or seeing the fluorescence, coherent detection of broadband terahertz wave at remote distance is feasible. © 2014 Higher Education Press and Springer-Verlag Berlin Heidelberg.
引用
收藏
页码:199 / 219
页数:20
相关论文
共 50 条
  • [11] Graphene-based tunable broadband metamaterial absorber for terahertz waves
    Zhang, Kaihua
    Dong, Shiwei
    Wu, Xiaohu
    Yu, Kun
    Liu, Yufang
    OPTICS AND LASER TECHNOLOGY, 2025, 180
  • [12] Broadband tunable absorber for terahertz waves based on isotropic silicon metasurfaces
    Song, Zhengyong
    Wang, Zhisheng
    Wei, Maoliang
    MATERIALS LETTERS, 2019, 234 : 138 - 141
  • [13] Terahertz atmospheric propagation studies in support of wireless remote sensing
    O'Hara, John F.
    Grischkowsky, Daniel R.
    NEXT-GENERATION SPECTROSCOPIC TECHNOLOGIES XI, 2018, 2018, 10657
  • [14] Terahertz Broadband Polarization Conversion for Transmitted Waves Based on Graphene Plasmon Resonances
    Yu, Anqi
    Yu, Dahai
    Yang, Zhenyu
    Guo, Xuguang
    Ren, Yuxiang
    Zang, Xiaofei
    Balakin, Alexei V.
    Shkurinov, Alexander P.
    Zhu, YiMing
    NANOMATERIALS, 2021, 11 (01) : 1 - 14
  • [15] A Double Resonance Approach to Submillimeter/Terahertz Remote Sensing at Atmospheric Pressure
    De Lucia, Frank C.
    Petkie, Douglas T.
    Everitt, Henry O.
    IEEE JOURNAL OF QUANTUM ELECTRONICS, 2009, 45 (1-2) : 163 - 170
  • [16] Real-time terahertz wave sensing via infrared detection interacted with evanescent terahertz waves
    Takuya Akiba
    Naoya Kaneko
    Koji Suizu
    Katsuhiko Miyamoto
    Takashige Omatsu
    Optical Review, 2015, 22 : 166 - 169
  • [17] Real-time terahertz wave sensing via infrared detection interacted with evanescent terahertz waves
    Akiba, Takuya
    Kaneko, Naoya
    Suizu, Koji
    Miyamoto, Katsuhiko
    Omatsu, Takashige
    OPTICAL REVIEW, 2015, 22 (01) : 166 - 169
  • [18] Infrared/Terahertz Double Resonance for Chemical Remote Sensing: Signatures and Performance Predictions
    Phillips, Dane J.
    Tanner, Elizabeth A.
    Everitt, Henry O.
    Medvedev, Ivan R.
    Neese, Christopher F.
    Holt, Jennifer
    De Lucia, Frank C.
    TERAHERTZ PHYSICS, DEVICES, AND SYSTEMS IV: ADVANCED APPLICATIONS IN INDUSTRY AND DEFENSE, 2010, 7671
  • [19] An ultra-broadband terahertz absorber at high terahertz frequency
    Li, Tong
    Chen, Hang
    Zhang, Fengqiang
    Zhang, Jia
    Wang, Zhenlong
    OPTICAL AND QUANTUM ELECTRONICS, 2022, 54 (12)
  • [20] An ultra-broadband terahertz absorber at high terahertz frequency
    Tong Li
    Hang Chen
    Fengqiang Zhang
    Jia Zhang
    Zhenlong Wang
    Optical and Quantum Electronics, 2022, 54