Infrared and Laser Engineering, Volume. 51, Issue 8, 20210733(2022)
Design of coupled structure of terahertz rectangular waveguide and coplanar waveguide
[1] Wang Yuye, Chen Linyu, Xu Degang, et al. Advances in terahertz three-dimensional imaging techniques[J]. Chinese Optics, 12, 1-18(2019).
[2] Liu Xinyuan, Zeng Haomin, Tian Xin, et al. Transmission simulation and safety analysis of terahertz radiation in skin[J]. Optics and Precision Engineering, 29, 999-1007(2021).
[3] He Jingwen, Dong Tao, Zhang Yan. Development of metasurfaces for wavefront modulation interahertz waveband[J]. Infrared and Laser Engineering, 49, 20201033(2020).
[4] Gao Xiang, Liu Xiaoqing, Dai Zijie, et al. Integrated terahertz confocal imaging system based on THz waveguides[J]. Infrared and Laser Engineering, 48, S219001(2019).
[5] Li Jing, Zhang Wen, Miao Wei, et al. Development of ultra high sensitivity superconducting THz detectors[J]. Chinese Optics, 10, 112-130(2017).
[6] Xie Lijuan, Yao Yang, Ying Yibin. The application of terahertz spectroscopy to protein detection: a review[J]. Applied Spectroscopy Reviews, 49, 448-461(2014).
[7] Lian Yuxuan, Feng Wei, Ding Qingfeng, et al. 340 GHz wireless communication receiving front-ends based on AlGaN/GaN HEMT terahertz detectors[J]. Infrared and Laser Engineerin, 50, 20210202(2021).
[8] Liu Zewen, Xuan Yun, Lei Xiaofeng, et al. Design and measurement of RF-MEMS CPW on HRS[J]. Optics and Precision Engineering, 13, 158-164(2005).
[9] Meng Fanyi, Wu Qun, Fu Jiahui, et al. Transmission characteristics of a rectangular waveguide filled with anisotropic metamaterial[J]. Acta Physica Sinica, 57, 5476-5484(2008).
[10] [10] Li Gang. Researches on design simulation technology of waveguidetomicrostrip transitions [D]. Xi ’an: Xidian University, 2008. (in Chinese)
[11] [11] Dong Yunfeng, Johansen T K, Zhurbenko V. Rectangular waveguidetocoplanar waveguide transitions at Ub using eplane probe wire bonding[C]2016 46th European Microwave Conference, 2016: 58.
[12] Dong Yunfeng, Zhurbenko V, Hanberg P J, et al. A D-band rectangular waveguide-to-coplanar waveguide transition using wire bonding probe[J]. Journal of Infrared, Millimeter, and Terahertz Waves, 40, 63-79(2019).
[13] [13] Dong Yunfeng, Zhurbenko V, Hanberg P J, et al. A DB Rectangular WaveguidetoCoplanar Waveguide Transition Using Metal Ridge[C]2019 IEEEMTTS International Microwave Symposium, 2019: 10501053.
[14] [14] Dong Yunfeng, Johansen T K, Zhurbenko V, et al. A rectangular waveguidetocoplanar waveguide transition at Db using wideb patch antenna[C]2018 48th European Microwave Conference, 2018: 10451048.
[15] Tang Wenxuan, Wang Jiangpeng, Yan Xiaotian, et al. Broadband and hzigh-efficiency excitation of spoof surface plasmon polaritons through rectangular waveguide[J]. Frontiers in Physics, 8, 582692(2020).
[16] Aliakbarian H, Radiom S, Tavakol V, et al. Fully micromachined W-band rectangular waveguide to grounded coplanar waveguide transition[J]. IET Microwaves, Antennas & Propagation, 6, 533-540(2012).
[17] Southworth G C. Principles and applications of waveguide transmission[J]. Bell System Technical Journal, 29, 295-342(1950).
[18] Zhou Yue, Zhang Guofeng. Design method of chebyshev transformer[J]. College Physics, 31, 29-31(2012).
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Hengze Yang, Chuanyu Liu, Jingzhi Wu, Yanhong Wang. Design of coupled structure of terahertz rectangular waveguide and coplanar waveguide[J]. Infrared and Laser Engineering, 2022, 51(8): 20210733
Category: Terahertz
Received: Nov. 8, 2021
Accepted: --
Published Online: Jan. 9, 2023
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