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- W2017334496 abstract "Chiral fiber gratings are produced in a microforming process in which optical fibers with noncircular or nonconcentriccores are twisted as they pass though a miniature oven. Periodic glass structures as stable as the glass material itself areproduced with helical pitch that ranges from under a micron to hundreds of microns. The geometry of the fiber crosssection determines the symmetry of the resulting structure which in turn determines its polarization selectivity. Singlehelix structures are polarization insensitive while double helix gratings interact only with a single optical polarization.Both single and double helix gratings may act as a fiber long period grating, coupling the core and cladding modes. Thecoupling is manifested in a series of narrow dips in the transmission spectrum. The dip position is sensitive to fiberelongation, twist and temperature, and to the refractive index of the surrounding medium. The suitability of chiralgratings for sensing pressure, temperature and liquid levels is investigated. Polarization insensitive single helix silicaglass gratings display excellent stability up to temperatures of 600°C, while a pressure sensor with dynamic range ofnearly 40 dB is demonstrated in polarization selective double helix gratings." @default.
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- W2017334496 date "2007-07-04" @default.
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- W2017334496 title "Chiral fiber gratings: perspectives and challenges for sensing applications" @default.
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- W2017334496 doi "https://doi.org/10.1117/12.738344" @default.
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