DocumentCode :
1192847
Title :
High-frequency signal processing using ferromagnetic metals
Author :
Kuanr, Bijoy ; Harward, I.R. ; Marvin, D.L. ; Fal, T. ; Camley, R.E. ; Mills, D.L. ; Celinski, Z.
Author_Institution :
Dept. of Phys., Colorado Univ., Colorado Springs, CO, USA
Volume :
41
Issue :
10
fYear :
2005
Firstpage :
3538
Lastpage :
3543
Abstract :
We present results for tunable microwave band-stop and bandpass filters on a microstrip geometry. These structures, prepared by sputtering on GaAs substrates, are compatible in size and growth process with on-chip high-frequency electronics. For the notch filters, we observed power attenuation up to ∼100 dB/cm and an insertion loss on the order of ∼2-3 dB for both Permalloy- and Fe-based structures. The operational frequency ranges from 5 to 35 GHz for external fields below 5 kOe. We discuss methods to increase operational frequency and reduce device linewidth. Using these techniques we are able, for example, to obtain an operational frequency of 11GHz at zero applied field and to narrow the device linewidth from 3 GHz to 330 MHz. The operational frequency, which can be obtained from the ferromagnetic resonance condition, is set by material properties such as saturation magnetization Ms, anisotropy fields, the gyromagnetic ratio, and the magnitude of an applied field H. Thus, by using different materials and external fields one can create devices which function over a wide range of frequencies.
Keywords :
band-pass filters; ferromagnetic materials; ferromagnetic resonance; microstrip filters; notch filters; signal processing; tuning; 5 to 35 GHz; anisotropy fields; ferromagnetic metals; ferromagnetic resonance; gyromagnetic ratio; microstrip geometry; notch filters; saturation magnetization; signal processing; sputtering; tunable microwave band stop filters; tunable microwave bandpass filters; Band pass filters; Frequency; Gallium arsenide; Geometry; Magnetic materials; Microstrip filters; Microwave filters; Power filters; Signal processing; Sputtering; Bandpass filter; band-stop filter; ferromagnetic resonance; microstrip;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2005.854725
Filename :
1519364
Link To Document :
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