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Abstract:

When an amplitude division interferometer is illuminated by an extended incoherent source the fringes are localized. If the incoherent source is a periodic array of sources or if it continuous, there is a fundamental difference at the observation space and this is the appearance of several (more than one) localization surfaces. In the present paper it is stated that localized fringes can also be obtained in wavefront division interferometers provided the source is incoherent and periodic. As an example, the multiple localization planes in Fresnel's biprism are shown and experimental results are compared to the theoretical ones.

Registro:

Documento: Artículo
Título:Fringe localization in wavefront division interferometers
Autor:Simon, J.M.; Echarri, R.M.; Simon, M.C.; Garea, M.T.
Filiación:Laboratorio De Optica, Departamento De Fisica, Universidad De Buenos Aires, 1428 Buenos Aires, Argentina
Palabras clave:Fringe localisation; Interferometers; Birefringence; Light interference; Light sources; Lighting; Prisms; Refractive index; Wavefronts; Amplitude division interferometers; Fresnel biprism; Fringe localization; Wavefront division interferometers; Interferometers
Año:2001
Volumen:112
Número:6
Página de inicio:255
Página de fin:258
DOI: http://dx.doi.org/10.1078/0030-4026-00049
Título revista:Optik (Jena)
Título revista abreviado:Optik (Jena)
ISSN:00304026
CODEN:OTIKA
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00304026_v112_n6_p255_Simon

Referencias:

  • Born, M., Wolf, E., (1985) Principles of Optics, , Pergamon Press, Sixth Edition
  • Hetch, E., Zajac, A., (1977) Optica, , Fondo Educativo Interamericano
  • Longhurst, R.S., (1973) Geometrical and Physical Optics, , Longman, London
  • Searle, G.F.C., Interference due to wedge of air or liquid between two glass plates, in theory and practice (1946) Philos. Mag., 37, pp. 361-389
  • Oppenheim, U., Jaffe, J.H., Interference in an optical edge (1956) Am. J. Phys., 24, p. 610
  • Sastry, G.P., Saraswat, R.S., Localization of fringes by the pair of images method: Wedge fringes versus Newton's rings (1990) Am. J. Phys., 58, p. 595
  • Simon, J.M., Comastri, S.A., Localization of interference fringes (1980) Am. J. Phys., 48, pp. 665-668
  • Simon, J.M., Simon, M.C., Echarri, R.M., Garea, M.T., Fringe localization interferometers illuminated by a succession of incoherent line sources (1998) J. Mod. Opt., 45, pp. 2245-2254

Citas:

---------- APA ----------
Simon, J.M., Echarri, R.M., Simon, M.C. & Garea, M.T. (2001) . Fringe localization in wavefront division interferometers. Optik (Jena), 112(6), 255-258.
http://dx.doi.org/10.1078/0030-4026-00049
---------- CHICAGO ----------
Simon, J.M., Echarri, R.M., Simon, M.C., Garea, M.T. "Fringe localization in wavefront division interferometers" . Optik (Jena) 112, no. 6 (2001) : 255-258.
http://dx.doi.org/10.1078/0030-4026-00049
---------- MLA ----------
Simon, J.M., Echarri, R.M., Simon, M.C., Garea, M.T. "Fringe localization in wavefront division interferometers" . Optik (Jena), vol. 112, no. 6, 2001, pp. 255-258.
http://dx.doi.org/10.1078/0030-4026-00049
---------- VANCOUVER ----------
Simon, J.M., Echarri, R.M., Simon, M.C., Garea, M.T. Fringe localization in wavefront division interferometers. Optik (Jena). 2001;112(6):255-258.
http://dx.doi.org/10.1078/0030-4026-00049