References |
Chen, R., Katzir, A., Levite, A., Mosre, F., Weiss, D., Absorption and luminescence of silver halide optical fibers (1986) J. Opt. Soc. Am. B, 3 (5), pp. 696-700; Artyushenko, V., Bocharnikov, A., Sakharova, T., Usenov, I., Mid-infrared fiber optics for 1-18 μm (2014) Opt. Photonik, 4, pp. 35-39; Grigorjeva, L.G., Millers, D.K., Kotomin, E.A., Eglitis, R.I., Lerman, A.A., Optical properties of silver halide fibres: Ageing effects (1996) J. Phys. D: Appl. Phys., 29, pp. 578-583; Zhukova, L., Korsakov, A., Chazov, A., Vrublevsky, D., Zhukov, V., Photonic crystalline IR fibers for the spectral range of 2-40 μm (2012) Appl. Opt., 51 (13), pp. 2414-2418; Frank, J., Schindler, R., Lendl, O., Lendl, B., Improved fiber-detector coupling for MIR spectroscopy employing shaped silver halide fibers (2000) Appl. Spectrosc., 54 (10), pp. 1417-1422; Vukovic, D., Scelsi, G.B., Woolsey, G.A., SF6-insulation monitoring in high-voltage systems with a CO2 laser and silver halide fibre (1997) OSA Tech. Digest, 16, pp. 269-272; Damin, C.A., Sommer, A.J., Characterization of silver halide fiber optics and hollow silica waveguides for use in the construction of a mid-infrared attenuated total reflection Fourier transform infrared (ATR FT-IR) spectroscopy probe (2013) Appl. Spectrosc., 67 (11), pp. 1252-1263; Karlowatz, M., Kraft, M., Eitenberger, E., Mizakoff, B., Katzir, A., Chemically tapered silver halide fibers: An approach for increasing the sensitivity of mid-infrared evanescent wave spectroscopy (2000) Appl. Spectrosc., 54 (11), pp. 1629-1633; Matsuura, Y., Miyagi, M., German, A., Nagli, L., Katir, A., Silver-halide fiber tip as a beam homonizer for infrared hollow waveguides (1997) Opt. Lett., 22 (17), pp. 1308-1310; Eyal, O., Shalem, S., Katzir, A., Solver midinfrared optical fiber y coupler (1994) Opt. Lett., 19 (22), pp. 1843-1845; Ksendzov, A., Lewi, T., Lay, O.P., Martin, S.R., Gappinger, R.O., Lawson, P.R., Peters, R.D., Katzir, A., Modal filtering for midinfrared nulling interferometry using single mode silver halide fibers (2008) Appl. Opt., 47 (31), pp. 5728-5735; Bunimovich, D., Katzir, A., Dielectric properties of silver halide and potassium halide crystals (1993) Appl. Opt., 32 (12), pp. 2045-2048; Gupta, B.R.K., Goyal, R.P., Study of anharmonic elastic properties of mixed diatomic crystals AgCl-AgBr and NaCl-NaBr (1984) Il NuovoCimento, 3 D (2), pp. 331-339; Zhukova, L.V., Korsakov, A.S., Vrublevsky, D.S., (2014) New Infrared Materials-Crystals and Optical Fibers, , Ural University Yekaterinburg; Chen, C., Katzir, A., Levite, A., Moser, F., Weiss, D., Absorption and luminescence of silver halide optical fibers (1986) J. Opt. Soc. Am. B, 3 (5), pp. 696-700; Saunders, V.I., On the absorption and vacuum photolysis of silver halides (1977) J. Opt. Soc. Am., 67 (6), pp. 830-832; Mitchel, G.R., Grek, B., Johnston, T.W., Martin, F., Pépin, H., Nanosecond photography at 10.6 μm using silver halide film (1979) Appl. Opt., 18 (14), pp. 2422-2426; Andreeva, O.V., Obyknovennaya, I.E., Gavrilyuk, E.R., Paramonov, A.A., Kushnarenko, A.P., Silver-halide photographic materials based on nanoporous glasses (2005) J. Opt. Technol., 72 (12), pp. 916-922; Ganzherli, N.M., Gulyaev, S.N., Holographic diffusers based on silver halide photoemulsion layers (2007) J. Opt. Technol., 74 (9), pp. 622-625; Vorzobova, N.D., Sokolova, E.V., Kalinina, N.M., Ryabova, R.V., Ponomarev, A.N., The characteristics of silver halide materials for holographic recording in the blue (2010) J. Opt. Technol., 77 (8), pp. 487-489; Korsakov, A.S., Zhukova, L.V., Vrublevsky, D.S., Korsakova, E.A., Investigating the properties of infrared PCFs based on AgCl-AgBr, AgBr-TlI, AgCl-AgBr-AgI(TlI) crystals theoretically and experimentally (2014) Opt. Spectrosc., 117, pp. 960-963; Korsakov, A.S., Zhukova, L.V., Korsakova, E.A., Zharikov, E.V., Structure modeling and growing AgClxBr1-x, Ag1-xTlxBr1-xIx, and Ag1-xTlxClyIzBr1-y-z crystals for infrared fiber optics (2014) J. Cryst. Growth, 386, pp. 94-99; 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) Appl. Opt., 54 (26), pp. 8004-8009; 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, , PerkinElmer Inc., Application note: UV/Vis Spectroscopy, Shelton, CT USA; Rogers, J.R., Hopler, M.D., Conversion of group refractive index to phase refractive index (1988) J. Opt. Soc. Am. A, 5 (10), pp. 1595-1600; 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 |