DocumentCode :
2758683
Title :
Periodically loaded transmission line media/materials with infinite extent on coplanar waveguide: Guided- wave performances
Author :
Zhu, Lei
Author_Institution :
Nanyang Technol. Univ., Singapore
fYear :
2006
fDate :
12-15 Dec. 2006
Firstpage :
363
Lastpage :
370
Abstract :
This paper aims to give a unified characterization of various periodically loaded transmission line media/materials with infinite extent on coplanar waveguide (CPW) in terms of two fundamental per-unit-length (PUL) transmission parameters, i.e., frequency-dispersive/complex characteristic impedance and propagation constant. Regardless of varied periodic loading elements, a self-calibrated method of moments (MoM) is in general applied to numerically de-embedding the two-port ABCD matrix of core finite-extent CPW sections, thus deriving these two PUL parameters. Firstly, infinite-extent CPW with series-inductive loaded in periodical intervals is studied as the electromagnetic bandgap (EBG) material. Two PUL parameters are extracted to provide a physical insight into slow-wave and bandstop behaviors of guided-wave. Secondly, two periodic CPW structures with series-capacitive or shunt-inductive loading are modeled to show the normal passbands of guided-wave with paralleled phase/group velocities. Lastly, CPW metamaterials with simultaneous series-capacitive and shunt- inductive loading are investigated to demonstrate the guided-wave performances in the distinctive left- (LH) and right-handed (RH) passbands. It is quantitatively verified that the stopband between the LH and RH passbands can be wholly eliminated by periodically loading distributed CPW elements with enhanced extent. Several finite-extent periodically loaded CPW circuits with 50-Omega feed lines are fabricated and measured to provide an experimental validation.
Keywords :
band-stop filters; coplanar transmission lines; coplanar waveguides; electric impedance; metamaterials; method of moments; photonic band gap; CPW circuit; CPW metamaterial; bandstop behavior; coplanar waveguide; electromagnetic bandgap; frequency-dispersive/complex characteristic impedance; guided-wave performance; left-handed passband; method of moments; per-unit-length transmission parameter; periodically loaded transmission line; propagation constant; right-handed passband; series-capacitive loading; shunt-inductive loading; slow-wave behavior; transmission line media/materials; Coplanar transmission lines; Coplanar waveguides; Electromagnetic waveguides; Frequency; Impedance; Metamaterials; Moment methods; Passband; Periodic structures; Propagation constant; Electromagnetic bandgap (EBG); characteristic impedance; metamaterials; periodically loaded transmission line; propagation constant; selfcalibrated method of moments;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Microwave Conference, 2006. APMC 2006. Asia-Pacific
Conference_Location :
Yokohama
Print_ISBN :
978-4-902339-08-6
Electronic_ISBN :
978-4-902339-11-6
Type :
conf
DOI :
10.1109/APMC.2006.4429441
Filename :
4429441
Link To Document :
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