Title :
Compact linear lead/lag metamaterial phase shifters for broadband applications
Author :
Antoniades, Marco A. ; Eleftheriades, George V.
Author_Institution :
Dept. of Electr. & Comput. Eng., Toronto Univ., Ont., Canada
fDate :
6/25/1905 12:00:00 AM
Abstract :
A compact one-dimensional phase shifter is proposed using alternating sections of negative refractive index (NRI) metamaterials and printed transmission lines (TL). The NRI metamaterial sections consist of lumped element capacitors and inductors, arranged in a dual TL (high-pass) configuration. By adjusting the NRI-medium lumped element values, the phase shift can be tailored to a given specification. Periodic analysis is applied to the structure and design equations are presented for the determination of the lumped element parameters for any arbitrary phase shift. To validate the design, various phase shifters are simulated and tested in coplanar waveguide (CPW) technology. It is demonstrated that small variations in the NRI-medium lumped element values can produce positive, negative or 0/spl deg/ phase shifts while maintaining the same short overall length. Thus, the new phase shifter offers some significant advantages over conventional delay lines: it is more compact in size, it exhibits a linear phase response around the design frequency, it can incur a phase lead or lag which is independent of the length of the structure and it exhibits shorter group delays.
Keywords :
UHF phase shifters; capacitors; coplanar waveguide components; inductors; microstrip lines; microwave phase shifters; periodic structures; refractive index; 0.9 GHz; broadband applications; compact metamaterial phase shifters; compact phase shifters; coplanar waveguide technology; delay lines; group delays; high-pass configuration; linear phase response; lumped element capacitors; lumped element inductors; negative refractive index metamaterials; periodic analysis; periodic structures; printed transmission lines; Capacitors; Coplanar waveguides; Equations; Inductors; Metamaterials; Periodic structures; Phase shifters; Refractive index; Testing; Transmission lines;
Journal_Title :
Antennas and Wireless Propagation Letters, IEEE
DOI :
10.1109/LAWP.2003.815280