References |
Polyakova, G.V., Lisitskiy, I.S., (2016) Thallium and silver halides – unique optical materials for the infrared, laser, and radiation devices, Scientific paper collection «Topical problems of contemporary mathematical and natural sciences», pp. 24-27; Korsakov, A.S., Zhukova, L.V., Shmygalev, A.S., Salimgareev, D.D., Korsakov, V.S., IR-probes for Fourier spectrometry, Optics InfoBase Conference Papers (2012) Specialty Optical Fibers, , Code 107788; Korsakov, A., Chazov, A., Zhukova, L., Terlyga, N., Vrublevsky, D., Korsakov, V., Zhukov, V., AgBr – TlI, AgBr – (KRS-5) photonic crystals and fibers based on them for middle and far infrared (2012) Optics InfoBase Conference Papers, Nonlinear Photonics, , Code 102627; Korsakov, A.S., Zhukova, L.V., Korsakov, V.S., Vrublevsky, D.S., Salimgareev, D.D., Research of phase equilibriums and modelling of structure of AgBr – (TlBr0.46I0.54) system (2014) J. Tsvetnye Metally, 8, pp. 50-54; Yavorsky, B.M., Detlaf, A.A., (1972) Physics course, Higher school (Vysshaya Shkola), Moscow; Landsberg, G.S., Optics (2003), FIZMATLIT Moscow; Zhukova, L.V., Korsakov, A.S., Salimgareev, D.D., Infrared Crystals: Theory and Practice (2015), Ural Federal University Ekaterinburg; Zhukova, L.V., Korsakov, A.S., Vrublevsky, D.S., New Infrared Materials: Crystals and Optical Fibers (2015), Ural Federal University Ekaterinburg; Korsakov, A.S., Vrublevsky, D.S., Korsakov, V.S., Zhukova, L.V., Investigating the optical properties of polycrystalline AgCl1−xBrx (0 ⩽ x ⩽ 1) and Ag0.95Tl0.05Br0.95I0.05 for IR engineering (2015) J Appl. Opt., 54, pp. 8004-8009; Dharma, J., (2012) Simple method of measuring the band gap energy value of TiO2 in the powder form using a UV/Vis/NIR spectrometer, PerkinElmer, Application note: UV/Vis/NIR Spectrometer, Shelton, CT, USA; Ravindra, N., Ganapathy, P., Choi, J., Energy gap – refractive index relations in semiconductors – an overview (2007) J. Infrared Phys. & Technol., 50, pp. 21-29; Moss, T., Relations between the refractive index and energy gap of semiconductors (1985) J. Phys. Status Solidi B, 131, pp. 415-427; Herve, P., Vandamme, L., General relation between refractive index and energy gap in semiconductors (1994) J. Infrared Phys. & Technol., 35, pp. 609-615; Kumar, V., Singh, J., Model for calculating the refractive index of different materials (2010) Indian J. Pure & Appl. Phys., 48, pp. 571-574; Reddy, R., Anjaneyulu, S., Viswanath, R., Optical and electronic properties of compound semiconductors (1992) J. Infrared Phys., 33, pp. 385-388; Reddy, R., Ahammed, Y., A study on the Moss relation (1995) J. Infrared Phys. & Technol., 36, pp. 825-830; Tripathy, S., Refractive indices of semiconductors from energy gaps (2015) J. Opt. Mater., 46, pp. 240-246; Anani, M., Mathieu, C., Hamza, A., Lebid, S., Zouaoui, C., Amar, Y., Model for calculating the refractive index of a III-IV semiconductor (2008) J. Comput. Mater. Sci., 41, pp. 570-575; Dionne, G., Woolley, J.C., Optical properties of some Pb1−xSnxTe alloys determined from infrared plasma reflectivity (1972) J. Phys. Rev. B, 6, pp. 3898-3913; Gopal, V., Energy gap-refractive index interrelation (1982) J. Infrared Phys., 22, pp. 255-257; Fleming, J.W., Dispersion in GeO2–SiO2 glasses (1984) J. App. Opt., 23, pp. 4486-4493; Padera, F., (2013) Measuring absorptance (k) and refractive index (n) of thin films with the PerkinElmer Lambda 950/1050 high performance UV-Vis/NIR Spectrometers, p. 9. , PerkinElmer Inc, Application note: UV/Vis Spectroscopy; Rogers, J.R., Hopler, M.D., Conversion of group refractive index to phase refractive index (1988) J. Opt. Soc. Am., A5, pp. 1595-1600; Schröter, H., On the refractive indices of some heavy-metal halides in the visible and calculation of interpolation formulas for dispersion (1931) Z. Phys., 67, pp. 24-36; Electronic resource (<>), Tel Aviv University, Applied physics group, , http://www.tau.ac.il/~applphys/, (19.10.2016); Palik, E.D., Handbook of Optical Constants of Solids, Version 3 (1988), Academic press USA; White, J.J., Optical properties of silver bromide (1972) J. Opt. Soc. Am., 62 (2), pp. 212-218; Voronkova, E., Gretchushnikov, B., Distler, G., Petrov, I., (1963) Optical Materials for the Infrared Engineering, Nauka (Science), Moscow; Manifacier, J.C., Gasiot, J., Fillard, J.P., A simple method for the determination of the optical constants, n, k and the thickness of a weakly absorbing thin film (1976) J. Phys. E: Sci. Instrum., 9, pp. 1002-1004 |