DocumentCode
1523559
Title
Fluxgate Principle Applied to a Magnetic Tunnel Junction for Weak Magnetic Field Sensing
Author
Breth, L. ; Dimopoulos, T. ; Schotter, J. ; Rott, K. ; Brückl, H. ; Suess, D.
Author_Institution
Nano Syst., Austrian Inst. of Technol., Vienna, Austria
Volume
47
Issue
6
fYear
2011
fDate
6/1/2011 12:00:00 AM
Firstpage
1549
Lastpage
1553
Abstract
A method is presented for measuring weak magnetic fields by applying a measurement principle known from fluxgate magnetometers to a magnetic tunnel junction. The fluxgate measurement principle based on second harmonic detection is transferred to magnetic tunnel junctions embedded in current lines. Based on Fourier analysis, we developed an analytical model to describe the response of a magnetic tunnel junction fluxgate sensor. The analytical result is compared to MATLAB simulations using Fast Fourier Transformation. Experimental results are obtained with a sensor prototype using lock-in amplification to detect the second harmonic component of the signal generated by the resistance change of the junction. A linear sensor characteristic with a sensitivity in the order of mV/mT is detected in an unshielded setup. Design improvements of the sensor layout as well as a low RA product of the magnetic tunnel junctions should make it possible in the future to detect pT-fields. A cheap sensing technology using magnetic tunnel junctions with the ability of measuring fields in the order of pT could promote novel diagnostic methods such as magnetocardiography into daily clinical routine.
Keywords
Fourier analysis; fast Fourier transforms; fluxgate magnetometers; magnetic field measurement; magnetic sensors; magnetic tunnelling; magnetoresistive devices; Fourier analysis; MATLAB simulations; analytical model; cheap sensing technology; current lines; daily clinical routine; diagnostic methods; fast Fourier transformation; fluxgate magnetometers; fluxgate measurement principle; linear sensor characteristic; lock-in amplification; magnetic tunnel junction fluxgate sensor; magnetocardiography; resistance change; second harmonic component; second harmonic detection; sensor layout; sensor prototype; unshielded setup; weak magnetic field sensing; Current measurement; Harmonic analysis; Junctions; Magnetic tunneling; Magnetometers; Saturation magnetization; Switches; Frequency domain analysis; magnetometers; magnetoresistive devices;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2011.2106114
Filename
5772185
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