DocumentCode :
614355
Title :
Tunable and adaptive LHM ZOR using a nonlinear dielectric thin film of STO
Author :
Mansour, Mohamed M. ; Elmala, Mostafa A. ; Shalaby, Abdel-Aziz T. ; El-Rabaie, El-Sayed M.
Author_Institution :
Microelectron. Dept., Electron. Res. Inst., Cairo, Egypt
fYear :
2013
fDate :
27-30 April 2013
Firstpage :
1
Lastpage :
6
Abstract :
In this paper, we propose a tunable CRLH ZOR based on the latest resurgent of ferroelectric materials. It is known that for most resonant structures, attainment of optimal performance requires some level of additional tuning through either mechanical means or other coupling mechanisms. Therefore, incorporation of electronic tuning into HTS components without degradation of performance is very attractive. The result will be low-loss microwave components that could be fine-tuned for optimal performance, with the additional attribute of being tunable over a broadband frequency range. The dielectric properties of the ferroelectric thin film, and the thickness of the ferroelectric film, play a fundamental role in the frequency or phase tunability and the overall insertion loss of the circuit. The ZOR is designed, and simulated by the full-wave analysis software. The response shows a variation of electromagnetic characteristics with the applied electric field, ferroelectric thickness and the operating temperature.
Keywords :
ferroelectric materials; ferroelectric thin films; high-temperature superconductors; microwave resonators; CRLH ZOR; HTS components; LHM ZOR; STO; circuit insertion loss; dielectric properties; electric field; electronic tuning; ferroelectric materials; ferroelectric thickness; ferroelectric thin film; full-wave analysis software; low-loss microwave components; nonlinear dielectric thin; resonant structures; Conductors; Dielectric losses; High-temperature superconductors; Microwave circuits; Temperature measurement; Tuning; Ferroelectric; HTS; LHM; MTM; STO; ZOR;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electronics, Communications and Photonics Conference (SIECPC), 2013 Saudi International
Conference_Location :
Fira
Print_ISBN :
978-1-4673-6196-5
Electronic_ISBN :
978-1-4673-6194-1
Type :
conf
DOI :
10.1109/SIECPC.2013.6550974
Filename :
6550974
Link To Document :
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