Affiliation:
1. School of Electronics and Communication Engineering, Sun Yat-sen University, Shenzhen 518107, China
2. Pengcheng Laboratory, Shenzhen 518107, China
Abstract
Orbit angular momentum (OAM) has been considered a new dimension for improving channel capacity in recent years. In this paper, a millimeter-wave broadband multi-mode waveguide traveling-wave antenna with OAM is proposed by innovatively utilizing the transmitted electromagnetic waves (EMWs) characteristic of substrate-integrated gap waveguides (SIGWs) to introduce phase delay, resulting in coupling to the radiate units with a phase jump. Nine “L”-shaped slot radiate elements are cut in a circular order at a certain angle on the SIGW to generate spin angular momentum (SAM) and OAM. To generate more OAM modes and match the antenna, four “Π”-shaped slot radiate units with a 90° relationship to each other are designed in this circular array. The simulation results show that the antenna operates at 28 GHz, with a −10 dB fractional bandwidth (FBW) = 35.7%, ranging from 25.50 to 35.85 GHz and a VSWR ≤ 1.5 dB from 28.60 to 32.0 GHz and 28.60 to 32.0 GHz. The antenna radiates a linear polarization (LP) mode with a gain of 9.3 dBi at 34.0~37.2 GHz, a l = 2 SAM–OAM (i.e., circular polarization OAM (CP–OAM)) mode with 8.04 dBi at 25.90~28.08 GHz, a l = 1 and l = 2 hybrid OAM mode with 5.7 dBi at 28.08~29.67 GHz, a SAM (i.e., left/right hand circular polarization (L/RHCP) mode with 4.6 dBi at 29.67~30.41 GHz, and a LP mode at 30.41~35.85 GHz. In addition, the waveguide transmits energy with a bandwidth ranging from 26.10 to 38.46 GHz. Within the in-band, only a quasi-TEM mode is transmitted with an energy transmission loss |S21| ≤ 2 dB.
Funder
national key research and development program of China
key Natural Science Foundation of Shenzhen
key research and development program of Shenzhen
Reference28 articles.
1. Utilization of photon orbital angular momentum in the low-frequency radio domain;Then;Phys. Rev. Lett.,2007
2. Vision, requirements, and technology trend of 6G: How to tackle the challenges of system coverage, capacity, user data-rate and movement speed;Chen;IEEE Wirel. Commun.,2020
3. New dimension in vortex electro-magnetic wave transmission with orbital angular momentum;Zhang;J. Commun.,2022
4. Millimeter-Wave Orbital Angular Momentum: Generation, Detection, and Applications: A Review on Millimeter Wave Orbital Angular Momentum Antennas;Wang;IEEE Microw. Mag.,2024
5. An OAM patch antenna design and its array for higher order OAM mode generation;Guo;IEEE Antennas Wirel. Propag. Lett.,2019
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献