Post-hydrogen-loaded draw tower fiber Bragg gratings and their thermal regeneration

The idea of Bragg gratings generated during the drawing process of a fiber dates back almost 20 years. The technical improvement of the draw tower grating (DTG) process today results in highly reliable and cost-effective Bragg gratings for versatile application in the optical fiber sensor market. Be...

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Veröffentlicht in:Applied Optics 2011-06, Vol.50 (17), p.2519-2522
Hauptverfasser: Lindner, Eric, Canning, John, Chojetzki, Christoph, Brückner, Sven, Becker, Martin, Rothhardt, Manfred, Bartelt, Hartmut
Format: Artikel
Sprache:eng
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Zusammenfassung:The idea of Bragg gratings generated during the drawing process of a fiber dates back almost 20 years. The technical improvement of the draw tower grating (DTG) process today results in highly reliable and cost-effective Bragg gratings for versatile application in the optical fiber sensor market. Because of the single-pulse exposure of the fiber, the gratings behave typically like type I gratings with respect to their temperature stability. This means that such gratings only work up to temperatures of about 300 °C. To increase temperature stability, we combined DTG arrays with hydrogen postloading and a thermal regeneration process that enables their use in high-temperature environments. The regenerated draw tower gratings are demonstrated to be suitable for temperatures of more than 800 °C.
ISSN:0003-6935
2155-3165
1539-4522
DOI:10.1364/AO.50.002519