Amplitude variation in fractional multiple-interference on N-beams

Multiple periodic patterns by light interference are a complicated problem from an experimen­tal point of view. We report a theoretical model of the incidence of N beams of light at one point in space. Two components of the electric field are projected: azimuthal (angle formed with the projection of...

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Detalles Bibliográficos
Autores: Alvarado Méndez, E., Trejo Durán, M., Estudillo Ayala, J. M., Rojas Laguna, R.
Tipo de recurso: artículo
Estado:Versión publicada
Fecha de publicación:2013
País:México
Institución:UNIVERSIDAD DE GUANAJUATO
Repositorio:Acta Universitaria
Idioma:español
OAI Identifier:oai:www.actauniversitaria.ugto.mx:article/582
Acceso en línea:https://www.actauniversitaria.ugto.mx/index.php/acta/article/view/582
Access Level:acceso abierto
Palabra clave:Periodic structures
multiple interference.
Estructuras periódicas
interferencia múltiple.
Descripción
Sumario:Multiple periodic patterns by light interference are a complicated problem from an experimen­tal point of view. We report a theoretical model of the incidence of N beams of light at one point in space. Two components of the electric field are projected: azimuthal (angle formed with the projection of the vector in space on the x-y plane) and zenithal (angle of the incident vector with the z-axis). As a result, azimuthal intensity and zenithal intensity are found. The case of fractional amplitude or fractional number of beams is analyzed. When the phase is modified, the process allows us to visualize the change of geometry. Quasi-lineal patterns to maximum and minimum concentric circles are observed. Some applications of these patterns can be found in sensors and engraving in some lithography processes.