DocumentCode :
1450900
Title :
Noise measurements on NiFe/Ag multilayered structures
Author :
Lhermet, Hélène ; Cuchet, Robert ; Vieux-Rochaz, Line ; Vaudaine, Marie-Hélène
Author_Institution :
CEA, Centre d´´Etudes Nucleaires de Grenoble, France
Volume :
36
Issue :
5
fYear :
2000
fDate :
9/1/2000 12:00:00 AM
Firstpage :
3618
Lastpage :
3620
Abstract :
Noise in NiFe/Ag giant magnetoresistive (GMR) multilayers and in magnetic field sensors based on this material has been studied in order to evaluate the potential of such material and such sensors for low field applications. GMR stripes were used to study the material intrinsic noise for varying DC sense current density, applied field and device dimensions. Noise measurements were then carried out on a magnetic field sensor for which thermal and magnetic characteristics have also been studied. The noise in NiFe/Ag multilayers is dominated by a 1/f noise at low frequencies and shows a flat spectrum at higher frequencies due to Johnson noise. The 1/f noise increases with the current density and is field and device-dimensions dependent. Magnetic field sensors based on NiFe/Ag are good candidates for the realization of low field micromagnetometers because they have suitable characteristics and relatively low noise
Keywords :
1/f noise; Permalloy; electric noise measurement; giant magnetoresistance; magnetic field measurement; magnetic multilayers; magnetic noise; magnetic sensors; magnetometers; silver; thermal noise; 1/f noise; GMR stripes; Johnson noise; NiFe-Ag; flat spectrum; giant magnetoresistive multilayers; low field applications; low field micromagnetometers; magnetic field sensors; material intrinsic noise; noise measurements; varying DC sense current density; varying applied field; varying device dimensions; Current density; Giant magnetoresistance; Low-frequency noise; Magnetic field measurement; Magnetic materials; Magnetic multilayers; Magnetic noise; Magnetic sensors; Noise measurement; Sensor phenomena and characterization;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.908919
Filename :
908919
Link To Document :
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