Waveguide design as biosensors

Currently there are numerous advances in the medical area that lead to more accurate diagnoses. However, there is an opportunity issue in terms of timely and non-invasive diagnosis. Detecting and characterizing small particles such as viruses in the air or bacteria in food is very useful, and it has...

Deskribapen osoa

Gorde:
Xehetasun bibliografikoak
Egile Nagusiak: Barboza-Tello, Norma Alicia, Ríos-Osuna, Luis Antonio, Medina-Castro, Paúl, Castillo-Barrón, Allen Alexander, Uriarte-Ramírez, Irma, Martínez-Plata, Daniela, Díaz-Hernández, Miguel Alejandro
Formatua: info:eu-repo/semantics/article
Hizkuntza:spa
Argitaratua: Universidad Autónoma de Baja California 2020
Gaiak:
Sarrera elektronikoa:https://recit.uabc.mx/index.php/revista/article/view/2oba16
Etiketak: Etiketa erantsi
Etiketarik gabe, Izan zaitez lehena erregistro honi etiketa jartzen!
Deskribapena
Gaia:Currently there are numerous advances in the medical area that lead to more accurate diagnoses. However, there is an opportunity issue in terms of timely and non-invasive diagnosis. Detecting and characterizing small particles such as viruses in the air or bacteria in food is very useful, and it has been reported that among the existing diagnostic and analysis techniques for biological samples, those based on waveguide biosensor have significant advantages, such as higher resolution and real-time detecting. The physical and geometric characteristics of the waveguide will determine its usefulness in each application. This paper presents the methodology for modeling waveguides using the free software called Metric; Silicon nitride (Si3N4) waveguides were modeled to study their potential as biosensors.