Compact magnetic-field sensor based on optical microfiber Michelson interferometer and Fe3O4 nanofluid
We report a magnetic-field sensor by merging the advantages of optical fiber Michelson interferometers with that of magnetic fluid. Compact and low-cost optical fiber Michelson interferometers were first fabricated by a high-frequency CO(2) laser, and then they were inserted into glass capillaries w...
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Veröffentlicht in: | Applied optics (2004) 2013-02, Vol.52 (4), p.734-741 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | We report a magnetic-field sensor by merging the advantages of optical fiber Michelson interferometers with that of magnetic fluid. Compact and low-cost optical fiber Michelson interferometers were first fabricated by a high-frequency CO(2) laser, and then they were inserted into glass capillaries with water-based Fe(3)O(4) magnetic fluid as sensing elements. The sensing characteristics have been investigated and the experimental results show that the reflective spectrum of the fiber-magnetic sensor linearly shifted with the change of the magnetic-field strength that is perpendicular to the axial of the devices. The fiber-magnetic sensor with interference arm's diameter of 50 μm is most sensitive to the external magnetic field, and the sensitivity is up to 64.9 pm/mT, which is 20 times higher than that of 125 μm diameter. |
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ISSN: | 1559-128X 2155-3165 1539-4522 |
DOI: | 10.1364/ao.52.000734 |