Multivariable Analysis of Nonlinear Optical Loop Mirror Operating Parameters Using Jones Matrices and Three-Dimensional Renderings

AudienciaPúblico en generales_ES
CoberturaMéxicoes_ES
Fecha de ingreso2026-09-15T00:30:15Z
Fecha de publicación2023-01-01
ResumenNonlinear optical loop mirrors (NOLMs) are used in modern fiber optic devices and optical communications. In this study, we present numerical analyses of the multiple variables involved in the operation of an NOLM in low- and high-power transmissions. The Jones matrix formalism was used to model linear and circular polarization inputs. We used three-dimensional (3D) plots to identify the characteristics required in the experimental operation of the NOLM. These characteristics, including the critical power, low- and high-power transmission, and dynamic range, depend on parameters such as the fiber loop length, input power, angle of retarder plate, and input polarization. A standard single-mode fiber (SMF-28) with high twist loop lengths of 100, 300, and 500 m and input powers of 0–100 W was simulated. Three-dimensional surface graphics provided a comprehensive view of the NOLM transmission and considerably enhanced the optimal transmission by manipulating adjustable device components including the power and polarization control plates. Optimal transmission facilitates its use in integrating ultrafast pulse generation, optical signal processing, optical communication systems, and photonic integrated circuit applications.es_ES
Doihttps://doi.org/10.3390/photonics10101071es_ES
URIhttps://riuat.uat.edu.mx/handle/123456789/2212
Idiomaeses_ES
EditorialMDPI AGes_ES
RelaciónPhotonicses_ES
URL relacionadohttps://doi.org/10.3390/photonics10101071es_ES
DerechosAcceso abierto (Metadatos de producción científica)es_ES
Licenciahttp://purl.org/coar/access_right/c_abf2es_ES
FuentePhotonics
TítuloMultivariable Analysis of Nonlinear Optical Loop Mirror Operating Parameters Using Jones Matrices and Three-Dimensional Renderingses_ES
TipoArtículoes_ES
ArbitradoHa sido Arbitradoes_ES
AutorFiloteo-Razo, Jose D.
AutorHernandez-Garcia, Juan C.
AutorEstudillo-Ayala, Julian M.
AutorPottiez, Olivier
AutorMartinez-Angulo, Jose R.
AutorBarron-Zambrano, Jose H.
AutorElizondo-Leal, Juan C.
AutorSaldivar-Alonso, Vicente P.
AutorLauterio-Cruz, Jesus P.
AutorRojas-Laguna, Roberto
AutorFiloteo-Razo, Jose D.es_ES
AutorHernandez-Garcia, Juan C.es_ES
AutorEstudillo-Ayala, Julian M.es_ES
AutorPottiez, Olivieres_ES
AutorMartinez-Angulo, Jose R.es_ES
AutorBarron-Zambrano, Jose H.es_ES
AutorElizondo-Leal, Juan C.es_ES
AutorSaldivar-Alonso, Vicente P.es_ES
AutorLauterio-Cruz, Jesus P.es_ES
AutorRojas-Laguna, Robertoes_ES
InstituciónUniversidad Autónoma de Tamaulipas
InstituciónUniversidad Autónoma de Tamaulipases_ES
Número10es_ES
Rango de páginas1071es_ES
URL relacionadahttps://doi.org/10.3390/photonics10101071
Tipo de artículoIndexado
Tipo de artículoIndexadoes_ES
Volumen10es_ES

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