Revista: | Revista mexicana de física |
Base de datos: | PERIÓDICA |
Número de sistema: | 000388945 |
ISSN: | 0035-001X |
Autores: | Barrio, J1 Han, T.P.J2 Lamela, J1 Heras, C. de la1 Lifante, G1 Sánchez Alejo, M.A3 Camarillo, E4 Jaque, F2 |
Instituciones: | 1Universidad Autónoma de Madrid, Facultad de Ciencias, Madrid. España 2University of Strathclyde, Department of Physics, Glasgow, Lanark. Reino Unido 3Universidad Nacional Autónoma de México, Posgrado en Ciencia e Ingeniería de Materiales, México, Distrito Federal. México 4Universidad Nacional Autónoma de México, Instituto de Física, México, Distrito Federal. México |
Año: | 2015 |
Periodo: | Nov-Dic |
Volumen: | 61 |
Número: | 6 |
Paginación: | 428-431 |
País: | México |
Idioma: | Inglés |
Tipo de documento: | Artículo |
Enfoque: | Analítico, teórico |
Resumen en inglés | In this work near-field optical measurements of a corrugated grating coated with a 30 nm thick gold film are presented. The grating was made using the polycarbonate corrugated substrate of a commercially available recordable CD as template. This has been proved to be a versatile and low cost technique in producing large 1.6 μm period gratings. The study was carried out using a Scanning Near-Field Optical Microscope (SNOM) working in both collection and reflection modes at two different wavelengths, 532 nm and 633 nm. The results illustrate that the intensity patterns of near-field images are strongly polarization-dependent, even showing different periodicity of the localized fields for orthogonal polarization states. When electric field of the light is polarized parallel to the grooves, the periodicity of the SNOM images is coincident with the grating period, whereas when the light is polarized perpendicular to the grooves the SNOM pattern shows a periodicity twice that of the corresponding topography of the grating. Numerical simulations of the SNOM data based on a two-dimensional Finite Difference Time-Domain (2D-FDTD) model have been realized. The results of the simulations are in good agreement with the experimental data, emphasizing the need of performing numerical simulation for the correct interpretation of SNOM data |
Disciplinas: | Física y astronomía |
Palabras clave: | Física, Optica, Microscopía óptica de barrido, Rejillas, Método de diferencias finitas en el dominio del tiempo |
Keyword: | Physics and astronomy, Optics, Physics, Scanning optical microscopy, Gratings, Finite difference on time domain method |
Texto completo: | Texto completo (Ver PDF) |