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Frequency response of a thin cobalt film magnetooptic sensor

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IIT-02-120R.pdf (285.0Kb)
Fecha
2002-12-01
Autor
Robles Muñoz, Guillermo
Giannetti, Romano
Estado
info:eu-repo/semantics/publishedVersion
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Resumen
 
 
The magnetooptic effect is due to a change in the po-larization of the light when it is reflected or passes through a mag-netized material. The rotation of the polarization plane is propor-tional to the magnetic field. The great advantage of using a mag-netooptic sensor to measure intensity or magnetic fields is its wide bandwidth. This fact is widely known; however, no effective mea-surements have been taken. In this paper, we present the frequency response of a cobalt thin film used as magnetooptic material. It was first excited by several sinusoidal magnetic fields at different frequencies. The range of frequencies studied in the first experi-ment reached 179 Hz, which is suitable for measuring power line intensity or magnetic fields. Because the coil that creates the mag-netic field has a great impedance at higher frequencies, an alter-native method based on magnetic impulses has been designed to obtain high-frequency data. With the latest experiments we have been able to measure frequencies as high as 2 MHz, obtaining a flat frequency response.
 
URI
https:doi.org10.1109TIM.2002.808049
Frequency response of a thin cobalt film magnetooptic sensor
Tipo de Actividad
Artículos en revistas
ISSN
0018-9456
Materias/ categorías / ODS
Instituto de Investigación Tecnológica (IIT)
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Ferromagnetic materials, magnetic field measurement, sensors
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