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Ver términos de la licenciaAzcarraga, Enrique Perez Mayesffer, et al. (2025). Experimental analysis of the scattering light for the wavelength of 532 nm through water cloud by the Monte Carlo-Mie method. Revista Mexicana de Física; Vol. 71 Núm. 1 Jan-Feb, 2025. Recuperado de https://repositorio.unam.mx/contenidos/4161183
Autor(es)
Azcarraga, Enrique Perez Mayesffer; Cuevas Terrones, R.; Zaldivar Huerta, I.; Hernández de La Luz, J. D.
Tipo
Artículo de Investigación
Área del conocimiento
Físico Matemáticas y Ciencias de la Tierra
Título
Experimental analysis of the scattering light for the wavelength of 532 nm through water cloud by the Monte Carlo-Mie method
Fecha
2025-01-01
Resumen
This paper describes an experimental analysis of the scattering of light through a cloud water. For this goal, an experimental setup to emulate a cloud of water is assembled. This arrangement is composed of an optical source emitting at the wavelength of 532 nm that is driven by a switching interface, a turbid medium, a photodiode, and an optical power meter. The optical source is modulated at the frequency of 1 Hz under Pulse Width Modulation (PWM) format. The modulated beam light travels the turbid medium, recovered by the photodiode that is connected to the power meter. The measured power data are analyzed using a novel Monte Carlo-Mie model to obtain the weighted extinction coefficient ratio probability. Subsequently, by the investment model some physical properties of the turbid medium as the refractive index and water droplet average sizes are obtained.
Tema
Monte Carlo Method; mie scattering; turbid media; investment model
Idioma
eng
ISSN
ISSN electrónico: 2683-2224; ISSN impreso: 0035-001X