PHOSFOS: Difference between revisions

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m Key results: Tried to clarify relations between concepts [silica fiber, polymer fiber, textile, tapestry].
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Figure 3 shows the [[scattering]] of HeNe [[laser]] light from noise gratings recorded in [[Poly(methyl methacrylate)|PMMA]] using a 325 nm HeCd laser.
 
One of the early results from the project was thein successful demonstration ofdeveloping a repeatable method offor joining the polymer fiber to standard silica fibre.fiber This was-- a major development andthat allowedenabled for the first timeusing POF Bragg gratings to be used in real applications outside of thean optics lab. One of the first uses for these sensors was in monitoring the strain ofin tapestries<ref>http://eprints.soton.ac.uk/68650/01/137_Lennard.pdf</ref> shown in Figure 4,.<ref>http://spie.org/x39927.xml?ArticleID=x39927</ref> In this case conventional electrical strain sensors and silica fiber sensors were shown to be strengthening the tapestries in areas where they were fixed. Because the polymer fibre devices are much more flexible they dodid not distort the materialtextiles as much, andpermitting therefore give a much mostmore accurate measurement of the strain in flexible materials. Temperature and humidity sensing using a combined silica / POF fiber sensor has been demonstrated.<ref>Optical fibre temperature and humidity sensor, C. Zhang, W. Zhang, D.J. Webb, G.D. Peng, Electronics Letters, 46, 9, pp643-644, 2010, {{doi|10.1049/el.2010.0879}}</ref> Combined strain, temperature and bend sensing has also been shown.<ref>Bragg grating in polymer optical fibre for strain, bend and temperature sensing, X. Chen, C. Zhang, D.J Webb, G.-D. Peng , K. Kalli, Measurement Science and Technology, 2010</ref> Using a fiber Bragg grating in an eccentric core polymer has been shown to yield a high sensitivity to bend.<ref>Highly Sensitive Bend Sensor Based on Bragg Grating in Eccentric Core Polymer Fiber, X. Chen, C. Zhang, D.J. Webb, K. Kalli, G.-D. Peng, A. Argyros, IEEE Sensors Journal, 2010</ref>
 
Other recent progress includes the demonstration of birefringent photonic crystal fibers with zero polarimetric sensitivity to temperature,<ref>{{Cite web |url=http://www.phosfos.eu/index.php/eng/Phosfos/Journals/Birefringent-photonic-crystal-fibers-with-zero-polarimetric-sensitivity-to-temperature |title=Archived copy |access-date=2010-02-03 |archive-url=https://web.archive.org/web/20110720172055/http://www.phosfos.eu/index.php/eng/Phosfos/Journals/Birefringent-photonic-crystal-fibers-with-zero-polarimetric-sensitivity-to-temperature |archive-date=2011-07-20 |url-status=dead }}</ref><ref>{{Cite web |url=http://www.phosfos.eu/eng/Phosfos/Facts-Results |title=Archived copy |access-date=2011-08-14 |archive-url=https://web.archive.org/web/20111126031453/http://www.phosfos.eu/eng/Phosfos/Facts-Results |archive-date=2011-11-26 |url-status=dead }}</ref> and a successful demonstration of transversal load sensing with fibre Bragg gratings in microstructured optic fibers.<ref>{{Cite web |url=http://www.phosfos.eu/index.php/eng/Phosfos/Journals/Transversal-Load-Sensing-with-Fiber-Bragg-Gratings-in-Microstructured-Optical-Fibers |title=Archived copy |access-date=2010-02-03 |archive-url=https://web.archive.org/web/20110720172149/http://www.phosfos.eu/index.php/eng/Phosfos/Journals/Transversal-Load-Sensing-with-Fiber-Bragg-Gratings-in-Microstructured-Optical-Fibers |archive-date=2011-07-20 |url-status=dead }}</ref>