УДК: 535.514.4
Narrow-band optical filters as polarizers for near-IR wavelengths
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Publication in Journal of Optical Technology
Нгуен Ван Ба, Губанова Л.А. Узкополосные светофильтры - поляризаторы для ближнего инфракрасного диапазона спектра // Оптический журнал. 2016. Т. 83. № 12. С. 31–35.
Nguen Van Ba, Gubanova L.A. Narrow-band optical filters as polarizers for near-IR wavelengths [in Russian] // Opticheskii Zhurnal. 2016. V. 83. № 12. P. 31–35.
Nguen Van Ba and L. A. Gubanova, "Narrow-band optical filters as polarizers for near-IR wavelengths," Journal of Optical Technology. 83(12), 734-737 (2016). https://doi.org/10.1364/JOT.83.000734
In this study, interference filters based on Fabry–Perot interferometers and the principle and effect of attenuated total internal reflection were analyzed. In addition, the characteristics of a MgF2 interference filter and glass-grade STF2 are provided. A transmission half-width of up to 4 nm at a contrast of 5.3×10−5 was achieved for a given filter constructed from three interference layers. It was established that the examined filter could be used as a polarizer.
interference filters, Fabry–Perot interferometer, attenuation of total internal reflection, s-component, half-width, contrast
Acknowledgements:The research was supported by the Russian Science Foundation (RSF) (14-23-00136).
OCIS codes: 310.1620, 310.6845
References:1. H. A. Macleod, Thin-Film Optical Filters, 3rd ed. (Institute of Physics Publishing, Philadelphia, 2001).
2. O. A. Motovilov, “Narrow-band interference filters for the ultraviolet region of the spectrum,” Opt. Spectrosc. 22, 986–988 (1967).
3. H. K. Pulker, “Characterization of optical thin films,” Appl. Opt. 18(12), 1969–1977 (1979).
4. M. A. Okatov, Optical Technician’s Handbook (Polytechnics, Saint Petersburg, 2004), pp. 506–512.
5. P. W. Baumeister, “Optical tunneling and its applications to optical filters,” Appl. Opt. 6(5), 897–905 (1967).
6. V. V. Chesnokov, D. V. Chesnokov, and A. S. Surneva, “Development of an interference filter model based on a total-internal-reflection resonator,” Optoelectron. Instrum. Data Process. 51(2), 205–211 (2015).
7. G. Hass, Physics of Thin Films (Mir, Moscow, 1967), pp. 91–145.
8. E. S. Putilin and L. A. Gubanova, Optical Coatings (Lan’, Saint Petersburg, 2016).
9. O. Svelto, Principles of Lasers (Mir, Moscow, 1990), pp. 168–175.
10. E. N. Kotlikov, Y. A. Novikova, and I. I. Kovalenko, “Film manager software for synthesis and analysis of interference coatings,” Hardware Software Res. (3), 51–59 (2015).