Title :
Terahertz Antenna Phase Shifters Using Integrally-Gated Graphene Transmission-Lines
Author :
Pai-Yen Chen ; Argyropoulos, Christos ; Alu, Andrea
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Texas at Austin, Austin, TX, USA
fDate :
4/1/2013 12:00:00 AM
Abstract :
We propose the concept and design of terahertz (THz) phase shifters for phased antenna arrays based on integrally-gated graphene parallel-plate waveguides (GPPWGs). We show that an active transmission-line may be realized by combining GPPWGs with double-gate electrodes, in which the applied gate voltage can control the guiding properties of the gated sections. This may enable the realization of THz electronic switches and tunable loaded-lines for sub mm-wave antenna systems. Based on these active components, we theoretically and numerically demonstrate several digital and analog phase shifter designs for THz frequencies, with a wide range of phase shifts and small return loss, insertion loss and phase error. The proposed graphene-based phase shifters show significant advantages over other available technology in this frequency range, as they combine the low-loss and compact-size features of GPPWGs with electrically-programmable phase tuning. We envision that these electronic phase shifters may pave the way to viable phased-arrays and beamforming networks for THz communications systems, as well as for high-speed, low-RC-delay, inter/intra-chip communications.
Keywords :
antenna phased arrays; graphene; millimetre wave phase shifters; transmission lines; GPPWG; THz communications systems; THz frequencies; THz phase shifters; analog phase shifter; applied gate voltage; beamforming networks; digital phase shifter; double-gate electrodes; electrically-programmable phase tuning; electronic switches; gated sections; guiding properties; insertion loss; integrally-gated graphene parallel-plate waveguides; integrally-gated graphene transmission-lines; inter-intrachip communications; low-RC-delay; phase error; phased antenna arrays; return loss; submm-wave antenna systems; terahertz phase shifters; tunable loaded-lines; Antenna arrays; Chemicals; Gold; Logic gates; Phase shifters; Switches; Beam steering; beamforming; graphene; phase shifters; phased-array antennas; terahertz;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2012.2220327