Characterization of a new design of temperature sensor based on plasmon resonance effect

In this work a study of the effect from temperature on surface plasmon polariton (SPP) is proposed. On a macroscopic scale, as a consequence in the variation of temperature, materials show dilation or contraction. Thus, based on SPP effect, using the gold grating surface plasmon resonance configurat...

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Main Authors: Miguel Ángel Ponce Camacho, Mayra Alejandra Heredia Aguilar, Josué Aarón López Leyva, Casemiro Oliveira Leiva
Format: Article
Language:English
Published: Universidad Autónoma de Baja California 2019-09-01
Series:Revista de Ciencias Tecnológicas
Subjects:
Online Access:http://recit.uabc.mx/index.php/revista/article/view/22
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spelling doaj-f30a48ede2c74c09ba3b18860c4d9af92020-11-25T03:19:59ZengUniversidad Autónoma de Baja CaliforniaRevista de Ciencias Tecnológicas2594-19252019-09-01239810510.37636/recit.v239810516Characterization of a new design of temperature sensor based on plasmon resonance effectMiguel Ángel Ponce Camacho0Mayra Alejandra Heredia Aguilar1Josué Aarón López Leyva2Casemiro Oliveira Leiva3CETYS Universidad, Calzada CETYS s/n, Col. Rivera, C. P. 21259 Mexicali, Baja California, MéxicoCETYS Universidad, Calzada CETYS s/n, Col. Rivera, C. P. 21259 Mexicali, Baja California, MéxicoCETYS Universidad, Calzada CETYS s/n, Col. Rivera, C. P. 21259 Mexicali, Baja California, MéxicoCentro de Ciências Exatas e Naturais, Universida de Federal Rural do Semi-Árido, BrazilIn this work a study of the effect from temperature on surface plasmon polariton (SPP) is proposed. On a macroscopic scale, as a consequence in the variation of temperature, materials show dilation or contraction. Thus, based on SPP effect, using the gold grating surface plasmon resonance configuration, a novel temperature sensor design is characterized.http://recit.uabc.mx/index.php/revista/article/view/22sensor de temperaturasuperficie de rejilla de oro resonancia de plasmónescala macroscópica
collection DOAJ
language English
format Article
sources DOAJ
author Miguel Ángel Ponce Camacho
Mayra Alejandra Heredia Aguilar
Josué Aarón López Leyva
Casemiro Oliveira Leiva
spellingShingle Miguel Ángel Ponce Camacho
Mayra Alejandra Heredia Aguilar
Josué Aarón López Leyva
Casemiro Oliveira Leiva
Characterization of a new design of temperature sensor based on plasmon resonance effect
Revista de Ciencias Tecnológicas
sensor de temperatura
superficie de rejilla de oro resonancia de plasmón
escala macroscópica
author_facet Miguel Ángel Ponce Camacho
Mayra Alejandra Heredia Aguilar
Josué Aarón López Leyva
Casemiro Oliveira Leiva
author_sort Miguel Ángel Ponce Camacho
title Characterization of a new design of temperature sensor based on plasmon resonance effect
title_short Characterization of a new design of temperature sensor based on plasmon resonance effect
title_full Characterization of a new design of temperature sensor based on plasmon resonance effect
title_fullStr Characterization of a new design of temperature sensor based on plasmon resonance effect
title_full_unstemmed Characterization of a new design of temperature sensor based on plasmon resonance effect
title_sort characterization of a new design of temperature sensor based on plasmon resonance effect
publisher Universidad Autónoma de Baja California
series Revista de Ciencias Tecnológicas
issn 2594-1925
publishDate 2019-09-01
description In this work a study of the effect from temperature on surface plasmon polariton (SPP) is proposed. On a macroscopic scale, as a consequence in the variation of temperature, materials show dilation or contraction. Thus, based on SPP effect, using the gold grating surface plasmon resonance configuration, a novel temperature sensor design is characterized.
topic sensor de temperatura
superficie de rejilla de oro resonancia de plasmón
escala macroscópica
url http://recit.uabc.mx/index.php/revista/article/view/22
work_keys_str_mv AT miguelangelponcecamacho characterizationofanewdesignoftemperaturesensorbasedonplasmonresonanceeffect
AT mayraalejandraherediaaguilar characterizationofanewdesignoftemperaturesensorbasedonplasmonresonanceeffect
AT josueaaronlopezleyva characterizationofanewdesignoftemperaturesensorbasedonplasmonresonanceeffect
AT casemirooliveiraleiva characterizationofanewdesignoftemperaturesensorbasedonplasmonresonanceeffect
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