Spatial optical filter sensor based on hollow-core silica tube

in: Optics Letters (2012)
Ferreira, Marta F.S.; Schuster, Kay; Kobelke, Jens; Santos, José Louis; Frazão, Orlando
A spatial optical filter based on a hollow-core silica tube is proposed. Because of the hollow-core dimensions, it is possible to obtain a periodical spatial filter ranging from 1200 to 1700 nm with a channel spacing of 2.64 THz. The bandwidth is approximately 5.32 nm, and the isolation loss is ∼30 dB. The optical losses are approximately ∼0.67 dB∕mm for a wavelength of 1500 nm. The 40 mm long spatial optical filter is tested as a sensing element and subjected to different physical parameters. The spatial optical filter is wavelength sensitive to strain and temperature, while for refractive-index variations there is an optical power dependency. This fiber structure can be used as a sensing element for extreme conditions, such as in very high temperature environments, where it presents a sensitivity of 27.5 pm°C−1.

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