Optoelectronics Letters, Volume. 18, Issue 7, 404(2022)
A novel dual-beam terahertz leaky-wave antenna based on spoof surface plasmon waveguide
[1] [1] BARNES W L, DEREUX A, EBBESENT W. Surface plasmon subwavelength optics[J]. Nature, 2003, 424(6950):824-830.
[2] [2] SHIN H, FAN S H. All-angle negative refraction for surface plasmon waves using a metal-dielectric-metal structure[J]. Physical review letters, 2006, 96(7): 073907.
[3] [3] HUTTER E, FENDLER J H. Exploitation of localized surface plasmon resonance[J]. Advanced materials, 2004, 16(19):1685-1706.
[4] [4] ZHANG Q L, CHEN B J, CHAN K F. Terahertz circularly and linearly polarized leaky-wave antennas based on spin-orbit interaction of spoof surface plasmon polaritons[J]. IEEE transactions on antennas and propagation, 2021, 69(8):4347-4358.
[5] [5] NAGHDEHFORUSHH A S, MORADI G. An improved method to null-fill H-plane radiation pattern of graphene patch THz antenna utilizing branch feeding microstrip line[J]. Optik, 2019, 181:21-27.
[6] [6] JIANG G K, HU X X, ZHAO J H, et al. Two-sided open metal grating based on SSP can realize field enhancement and tightly focusing of terahertz wave[J]. Journal of optoelectronics·laser, 2021, 32(7):760-767. (in Chinese)
[7] [7] TENG Y. 120 GHz on-chip multi-mode wideband dielectric resonator antennas for THz applications[J]. Optoelectronics letters, 2020, 16:166-170.
[8] [8] SUN P L. 420-GHz terahertz SIW slot antenna with quartz superstrates in silicon technology[J]. Optoelectronics letters, 2020, 16:25-28.
[9] [9] SOUZA G, RODRIGUEZ-ESQUERRE V. Wide-angle filters based on nanoresonators for the visible spectrum[J]. Applied optics, 2018, 57(23):6755-6759.
[10] [10] ZHANG Q L, CHEN B J, CHAN K F. High-gain millimeter-wave antennas based on spoof surface plasmon polaritons[J]. IEEE transactions on antennas and propagation, 2020, 68(6):4320-4331.
[11] [11] WANG M, MA H F, ZHANG H C, et al. Frequency-fixed beam-scanning leaky-wave antenna using electronically controllable corrugated microstripline[J]. IEEE transactions on antennas and propagation, 2018, 66(9):4449-4457.
[12] [12] SHIBAYAMA J, HARA T, YAMAUCHI J, et al. Improved cylindrical HIE-FDTD method and its application to a metal disk-type surface wave splitter[J]. IEEE microwave and wireless components letters, 2019, 29(3):177-179.
[13] [13] LI X W, WANG J H, LI Z, et al. Dual-beam leaky-wave antenna array with capability of fixed-frequency beam switching[J]. IEEE access, 2020, 8:28155-28163.
[14] [14] LEE H H, ZHAO E X, CHEN D H, et al. Dual-beam stealth laser dicing based on electrically tunable lens[J]. Precision engineering, 2020, 66:374-381.
[15] [15] GENG Y J, WANG J H, LI Z, et al. Dual-beam and tri-band SIW leaky-wave antenna with wide beam scanning range including broadside direction[J]. IEEE access, 2019, 7:176361-176368.
[16] [16] MA Z L, JIANG L J. One-dimensional triple periodic dual-beam microstrip leaky-wave antenna[J]. IEEE antennas and wireless propagation letters, 2015, 14: 390-393.
[17] [17] MA Z L, CHAN C H, JIANG L J, et al. A novel supercell-based dielectric grating dual-beam leaky-wave antenna for 60-GHz applications[J]. IEEE transactions on antennas and propagation, 2016, 64(12):5521-5526.
[18] [18] ZHANG C H, REN J, DU X Y, et al. Dual-beam leaky-wave antenna based on dual-mode spoof surface plasmon polaritons[J]. IEEE antennas and wireless propagation letters, 2021, 20(10):2008-2012.
[19] [19] YU H, ZHANG K, DING X M, et al. A dual-beam leaky-wave antenna based on squarely modulated reactance surface[J]. Applied science, 2020, 10(3):962.
Get Citation
Copy Citation Text
BAI Yukun, LIU Song. A novel dual-beam terahertz leaky-wave antenna based on spoof surface plasmon waveguide[J]. Optoelectronics Letters, 2022, 18(7): 404
Received: Sep. 23, 2021
Accepted: Nov. 24, 2021
Published Online: Jan. 20, 2023
The Author Email: Song LIU (liusong887766@163.com)