Temperature Sensor Based on an Asymmetric Two-Hole Fiber Using a Sagnac Interferometer

AudienciaPúblico en generales_ES
CoberturaMéxicoes_ES
Fecha de ingreso2026-09-15T00:30:25Z
Fecha de publicación2018-01-01
ResumenWe report in this paper a temperature sensor based on an asymmetric two-hole fiber (ATHF) using a Sagnac interferometer (SI) configuration. The operation principle is based on the birefringence change induced by the temperature difference between the air holes and the silica fiber. As a result, the transmitted spectrum of the SI exhibits a sinusoidal profile which is shifted when the temperature is increased. A linear wavelength shift as a function of temperature is observed, and a sensitivity of 2.22 nm/°C was achieved using a 2 m long asymmetric THF, which is in the same order as those previously reported using similar microstructured fibers. The advantage of this system is a linear response, the use of a microstructured fiber with a simpler transverse geometry, and the use of bigger holes which can facilitate the insertion of several materials and improve the sensitivity of the sensor for different applications.es_ES
Doihttps://doi.org/10.1155/2018/7595106es_ES
URIhttps://riuat.uat.edu.mx/handle/123456789/2359
Idiomaeses_ES
EditorialWileyes_ES
RelaciónJournal of Sensorses_ES
URL relacionadohttps://doi.org/10.1155/2018/7595106es_ES
DerechosAcceso abierto (Metadatos de producción científica)es_ES
Licenciahttp://purl.org/coar/access_right/c_abf2es_ES
FuenteJournal of Sensors
TítuloTemperature Sensor Based on an Asymmetric Two-Hole Fiber Using a Sagnac Interferometeres_ES
TipoArtículoes_ES
ArbitradoHa sido Arbitradoes_ES
AutorDomínguez-Cruz, René
AutorMay-Arrioja, Daniel A.
AutorMartínez-Manuel, Rodolfo
AutorLopez-Cortes, Daniel
AutorDomínguez-Cruz, Renées_ES
AutorMay-Arrioja, Daniel A.es_ES
AutorMartínez-Manuel, Rodolfoes_ES
AutorLopez-Cortes, Danieles_ES
InstituciónUniversidad Autónoma de Tamaulipas
InstituciónUniversidad Autónoma de Tamaulipases_ES
Rango de páginas1-6es_ES
URL relacionadahttps://doi.org/10.1155/2018/7595106
Tipo de artículoIndexado
Tipo de artículoIndexadoes_ES
Volumen2018es_ES

Files