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An all fiber intrinsic Fabry-Perot Interferometer based on an air-microcavity

In this work an Intrinsic Fabry-Perot Interferometer (IFPI) based on an air-microcavity is presented. Here the air microcavity, with silica walls, is formed at a segment of a hollow core photonic crystal fiber (HCPCF), which is fusion spliced with a single mode fiber (SMF). Moreover, the spectral re...

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Published in:Sensors (Basel, Switzerland) Switzerland), 2013-05, Vol.13 (5), p.6355-6364
Main Authors: Jáuregui-Vázquez, Daniel, Estudillo-Ayala, Julián M, Rojas-Laguna, Roberto, Vargas-Rodríguez, Everardo, Sierra-Hernández, Juan M, Hernández-García, Juan C, Mata-Chávez, Ruth I
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cited_by cdi_FETCH-LOGICAL-c472t-4ca30d94828f8a17b5ce532dc3de0e2aa697b3edbc459f82cfb3277252633b8f3
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container_title Sensors (Basel, Switzerland)
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creator Jáuregui-Vázquez, Daniel
Estudillo-Ayala, Julián M
Rojas-Laguna, Roberto
Vargas-Rodríguez, Everardo
Sierra-Hernández, Juan M
Hernández-García, Juan C
Mata-Chávez, Ruth I
description In this work an Intrinsic Fabry-Perot Interferometer (IFPI) based on an air-microcavity is presented. Here the air microcavity, with silica walls, is formed at a segment of a hollow core photonic crystal fiber (HCPCF), which is fusion spliced with a single mode fiber (SMF). Moreover, the spectral response of the IFPI is experimentally characterized and some results are provided. Finally, the viability to use the IFPI to implement a simple, compact size, and low cost refractive index sensor is briefly analyzed.
doi_str_mv 10.3390/s130506355
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subjects Fabry-Perot interferometer
Fiber optic interferometers
hollow core photonic crystal fiber
microcavity
refractive index sensor
Sensors
title An all fiber intrinsic Fabry-Perot Interferometer based on an air-microcavity
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