TY - JOUR
T1 - Design and Measurement of Terahertz Broadband Vertically Coupled High-Order TE□n0 Mode Converters
AU - Shu, Guoxiang
AU - Hong, Shengtao
AU - Huang, Longshen
AU - Shi, Binbin
AU - Li, Xinqiang
AU - Liao, Jiacai
AU - Feng, Botao
AU - Ruan, Cunjun
AU - He, Wenlong
N1 - Publisher Copyright:
© 2011-2012 IEEE.
PY - 2026/6/1
Y1 - 2026/6/1
N2 - The theoretical analysis, simulation, fabrication, and measurement of a novel TE□10-TE□n0 mode converter is described in this article. In the existing research work, although a significant portion of mode converters have the expansibility to higher order modes, the performance of the mode converters will deteriorate when the mode index increases. As we know, no mode converters operating higher than TE□70 mode have ever been reported. To address this issue, a novel vertically coupled mode converter for converting the TE□10 mode to higher order TE□n0 mode is proposed in this article. As examples, the TE□10-TE□80 and TE□10-TE□70 mode converters are designed. Simulated results show that the 1 dB transmission bandwidths of the TE□10-TE□80 and the TE□10-TE□70 mode converters are 56.1 GHz (228.7-284.8 GHz) and 50.0 GHz (232.3-282.3 GHz), respectively. Within the operating bandwidth, the reflection coefficients S11 of both mode converters are less than -15 dB and the conversion efficiencies S21 of the targeted TE□80 mode and TE□70 mode are higher than 99% and 92%, respectively. In addition, two back-to-back connected TE□10-TE□80 mode converters are fabricated and measured to verify the design. The measured S-parameters align well with the simulated results and exhibit a flat response, which confirms the feasibility of the proposed mode converter and shows that it can achieve good performance at much higher order modes.
AB - The theoretical analysis, simulation, fabrication, and measurement of a novel TE□10-TE□n0 mode converter is described in this article. In the existing research work, although a significant portion of mode converters have the expansibility to higher order modes, the performance of the mode converters will deteriorate when the mode index increases. As we know, no mode converters operating higher than TE□70 mode have ever been reported. To address this issue, a novel vertically coupled mode converter for converting the TE□10 mode to higher order TE□n0 mode is proposed in this article. As examples, the TE□10-TE□80 and TE□10-TE□70 mode converters are designed. Simulated results show that the 1 dB transmission bandwidths of the TE□10-TE□80 and the TE□10-TE□70 mode converters are 56.1 GHz (228.7-284.8 GHz) and 50.0 GHz (232.3-282.3 GHz), respectively. Within the operating bandwidth, the reflection coefficients S11 of both mode converters are less than -15 dB and the conversion efficiencies S21 of the targeted TE□80 mode and TE□70 mode are higher than 99% and 92%, respectively. In addition, two back-to-back connected TE□10-TE□80 mode converters are fabricated and measured to verify the design. The measured S-parameters align well with the simulated results and exhibit a flat response, which confirms the feasibility of the proposed mode converter and shows that it can achieve good performance at much higher order modes.
KW - Coupling aperture
KW - high-order overmoded
KW - mode converter
KW - slow-wave structure
KW - terahertz-band
UR - https://www.scopus.com/pages/publications/105029633727
U2 - 10.1109/TTHZ.2026.3660021
DO - 10.1109/TTHZ.2026.3660021
M3 - 文章
AN - SCOPUS:105029633727
SN - 2156-342X
VL - 16
SP - 696
EP - 705
JO - IEEE Transactions on Terahertz Science and Technology
JF - IEEE Transactions on Terahertz Science and Technology
IS - 6
ER -