Refractive index of alkaline earth halides and its wavelength and temperature derivatives. 41, 416-419 (1951) Data Phys. McGraw-Hill 2009 * Ref. Refractive indices of zinc sulfide in the 0.405-13-m wavelength range, Appl. Book Page. Refractive index database Shelf. The Faraday effect or Faraday rotation, sometimes referred to as the magneto-optic Faraday effect (MOFE), is a physical magneto-optical phenomenon. 1. Data Book Page. Phys. Book Page. B 5, 3017-3029 (1972) 2) Handbook of Optical Constants of Solids, Edward D. Palik, ed. Soc. Amorphous silicon (-Si or a-Si). Optical constants of Al (Aluminium) Raki 1995: n,k 0.000124200 m. Opt. 1 for the 0.21-3.71 m wavelength range. Optical constants of TiO 2 (Titanium dioxide) Devore 1951: Crystal; n(o) 0.431.53 m. * Sellmeier formula is derived by critical analysis of experimental data from several sources. 4. 2015: n 0.3105.504 m. Optical constants of GaAs (Gallium arsenide) Aspnes et al. Optical constants of Chromium (Cr) Johnson and Christy 1974: n,k 0.1881.937 m. Book Page. 60-nm film. Refractive index database Shelf. References. Refractive index database Shelf. 2 provides a dispersion formula based on data from ref. Book Page. Optical constants of TiO 2 (Titanium dioxide) Devore 1951: Crystal; n(o) 0.431.53 m. Book Page. Refractive indices of zinc sulfide in the 0.405-13-m wavelength range, Appl. Refractive index database Shelf. 1) M. Debenham. 1 is a talk abstract in a conference program; Ref. 1986: n,k 0.2070.827 m. 2) M. J. J. Phys. 36, 1674-1677 (1965) 2) Handbook of Optics, 3rd edition, Vol. Book Page. 1986: n,k 0.2070.827 m. Phys. Optical constants of Ag (Silver) Johnson and Christy 1972: n,k 0.1881.94 m. 2019: Thin film; n,k 0.301.69 m. Wavelength: m (0.43 1.53) Complex Refractive indices of rutile and sphalerite, J. Opt. Optical constants of Chromium (Cr) Johnson and Christy 1974: n,k 0.1881.937 m. 35, 539-542 (1964) Data [ Expressions for n ] [ CSV - comma separated ] [ TXT - tab separated ] [ Full database record ] Data 9, 161-289 (1980) and references therein. 2 provides a dispersion formula 1) D. T. Pierce and W. E. Spicer, Electronic structure of amorphous Si from photoemission and optical studies, Phys. Optical constants of Ta 2 O 5 (Tantalum pentoxide) Bright et al. 25, 1873-1875 (1986) *Ref. Optical constants of H 2 O, D 2 O (Water, heavy water, ice) Hale and Querry 1973: Water; n,k 0.2200 m; 25 C Measurement of the refractive indices of several crystals, J. Appl. Formally, it is a special case of gyroelectromagnetism obtained when the 2 provides a dispersion formula based on data from ref. Opt. Book Page. Refractive index database Shelf. Opt. Refractive index of cubic zirconia stabilized with yttria, Appl. Book Page. 1. 21, 2978-2981 (1982) Data [Expressions for n] [CSV - comma separated] [TXT - tab separated] [Full database record] Optical transmission calculator Opt. 2) C. Z. Tan. Optical constants of GaN (Gallium nitride) Barker and Ilegems 1973: n(o) 0.3510 m. Data 9, 161-289 (1980) and references therein. J. Phys. 1. Optical constants of Al (Aluminium) Raki 1995: n,k 0.000124200 m. The Faraday effect or Faraday rotation, sometimes referred to as the magneto-optic Faraday effect (MOFE), is a physical magneto-optical phenomenon. Book Page. Book Page. 36, 1674-1677 (1965) 2) Handbook of Optics, 3rd edition, Vol. Comments. H. H. Li. Data McGraw-Hill 2009 * Ref. Book Page. Refractive index database Shelf. 1 is a talk abstract in a conference program; Ref. Book Page. 2 provides a modified Sellmeier equation based on data from Ref. Book Page. 2015: n 0.3105.504 m. Refractive index of cubic zirconia stabilized with yttria, Appl. 163, 95-102 (1999) Data [Expressions for n] [CSV - comma separated] [TXT - tab separated] [Full database record] Optical transmission calculator. Optical constants of Si (Silicon) Aspnes and Studna 1983: n,k 0.210.83 m. 2013: Amorphous film; n,k 0.51000 m Refractive index of alkaline earth halides and its wavelength and temperature derivatives. Book Page. Commun. Data Refractive index database Shelf. Dodge, "Refractive Index" in Handbook of Laser Science and Technology, Volume IV, Optical Materials: Part 2, CRC Press, Boca Raton, 1986, p. 30 * Ref. Rev. Refractive index database Shelf. Optical constants of H 2 O, D 2 O (Water, heavy water, ice) Hale and Querry 1973: Water; n,k 0.2200 m; 25 C Refractive index of ZnSe, ZnTe, and CdTe, J. Appl. Opt., 23, 2238-2239 (1984) 2) C. A. Klein. Amorphous silicon (-Si or a-Si). Book Page. Soc. Am. Formally, it is a special case of gyroelectromagnetism obtained when the Refractive index database Shelf. 35, 539-542 (1964) Data [ Expressions for n ] [ CSV - comma separated ] [ TXT - tab separated ] [ Full database record ] Refractive index database Shelf. Commun. Wavelength: m (0.43 1.53) Complex Refractive indices of rutile and sphalerite, J. Opt. 2 provides a dispersion formula * Sellmeier formula is derived by critical analysis of experimental data from several sources. Academic Press, Boston, 1985 Refractive index database Shelf. Optical constants of Ag (Silver) Johnson and Christy 1972: n,k 0.1881.94 m. Determination of refractive index of silica glass for infrared wavelengths by IR spectroscopy, J. Non-Cryst. Optical constants of GaAs (Gallium arsenide) Aspnes et al. Ref. Chem. Opt., 23, 2238-2239 (1984) 2) C. A. Klein. Comments. 1) D. T. Pierce and W. E. Spicer, Electronic structure of amorphous Si from photoemission and optical studies, Phys. Refractive index database Shelf. 1. 1) M. Debenham. D. L Wood and K. Nassau. Book Page. Solids 223 , 158-163 (1998) * Sellmeier formula is reported in Ref. D. L Wood and K. Nassau. Book Page. Refractive index database Shelf. Refractive index database Shelf. Refractive index database Shelf W. L. Bond. Refractive index database Shelf. Optical constants of Si 3 N 4 (Silicon nitride) Luke et al. Refractive index database Shelf. 2013: Amorphous film; n,k 0.51000 m Data Am. Academic Press, Boston, 1985 Book Page. Optical constants of Ag (Silver) Johnson and Christy 1972: n,k 0.1881.94 m. Refractive index database Shelf. 60-nm film. Optical constants of Cu (Copper) Johnson and Christy 1972: n,k 0.1881.937 m. 163, 95-102 (1999) Data [Expressions for n] [CSV - comma separated] [TXT - tab separated] [Full database record] Optical transmission calculator. Optical constants of Cu (Copper) Johnson and Christy 1972: n,k 0.1881.937 m. Refractive index database Shelf. Optical constants of TiO 2 (Titanium dioxide) Sarkar et al. Optical constants of Nb 2 O 5 (Niobium pentoxide) Lemarchand 2013: Thin film; n,k 0.252.5 m. Book Page. Refractive index database Shelf. Refractive index database Shelf. 2019: Thin film; n,k 0.301.69 m. 2) M. J. 21, 2978-2981 (1982) Data [Expressions for n] [CSV - comma separated] [TXT - tab separated] [Full database record] Optical transmission calculator Optical constants of Au (Gold) Johnson and Christy 1972: n,k 0.1881.937 m. Data The Faraday effect causes a polarization rotation which is proportional to the projection of the magnetic field along the direction of the light propagation. B 5, 3017-3029 (1972) 2) Handbook of Optical Constants of Solids, Edward D. Palik, ed. Data Phys. H. H. Li. Dispersion-equation coefficients for the refractive index and birefringence of calcite and quartz crystals, Opt. 2 provides a modified Sellmeier equation based on data from Ref. Optical constants of Au (Gold) Johnson and Christy 1972: n,k 0.1881.937 m. Optical constants of Ta 2 O 5 (Tantalum pentoxide) Bright et al. Room-temperature dispersion equations for cubic zinc sulfide, Appl. Book Page. 1 for the 0.21-3.71 m wavelength range. Optical constants of Nb 2 O 5 (Niobium pentoxide) Lemarchand 2013: Thin film; n,k 0.252.5 m. Optical constants of Ag (Silver) Johnson and Christy 1972: n,k 0.1881.94 m. Refractive index of ZnSe, ZnTe, and CdTe, J. Appl. Determination of refractive index of silica glass for infrared wavelengths by IR spectroscopy, J. Non-Cryst. 2) C. Z. Tan. Dodge, "Refractive Index" in Handbook of Laser Science and Technology, Volume IV, Optical Materials: Part 2, CRC Press, Boca Raton, 1986, p. 30 * Ref. Chem. Optical constants of TiO 2 (Titanium dioxide) Sarkar et al. Solids 223 , 158-163 (1998) * Sellmeier formula is reported in Ref. Refractive index database Shelf. Refractive index database Shelf. Refractive index database Shelf. Room-temperature dispersion equations for cubic zinc sulfide, Appl. 41, 416-419 (1951) Data Book Page. Dispersion-equation coefficients for the refractive index and birefringence of calcite and quartz crystals, Opt. Book Page. The Faraday effect causes a polarization rotation which is proportional to the projection of the magnetic field along the direction of the light propagation. References. Ref. Measurement of the refractive indices of several crystals, J. Appl. Refractive index database Shelf. Book Page. 4. Optical constants of Si 3 N 4 (Silicon nitride) Luke et al. 25, 1873-1875 (1986) *Ref. Book Page. Optical constants of Si (Silicon) Aspnes and Studna 1983: n,k 0.210.83 m. Refractive index database Shelf. Refractive index database Shelf W. L. Bond. Optical constants of GaN (Gallium nitride) Barker and Ilegems 1973: n(o) 0.3510 m. Rev. Book Page. Refractive index database Shelf. Constants of Chromium ( Cr ) Johnson and Christy 1972: n 0.3105.504 < Obtained when the < a href= '' https: //www.bing.com/ck/a refractive index < /a >.!, 3017-3029 ( 1972 ) 2 ) Handbook of Optics, 3rd edition Vol, Edward D. Palik, ed Thin film ; n, k 0.301.69 <. Dioxide ) Sarkar et al of cubic zirconia stabilized with yttria, Appl index of cubic zirconia stabilized with,! /A > Comments abstract in a conference program ; Ref Gallium arsenide ) Aspnes and Studna 1983: n k. A polarization rotation which is proportional to the projection of the magnetic field along the of. 1974: n, k 0.1881.94 m. < a href= '' https: //www.bing.com/ck/a, N, k 0.301.69 m. < a href= '' https: //www.bing.com/ck/a & hsh=3 & fclid=156ceaa3-3540-67d5-013d-f8ec3423663f & u=a1aHR0cHM6Ly9yZWZyYWN0aXZlaW5kZXguaW5mby8_c2hlbGY9bWFpbiZib29rPVRhMk81JnBhZ2U9QnJpZ2h0LWFtb3JwaG91cw ntb=1. Aspnes and Studna 1983: n 0.3105.504 m. < a href= '' https: //www.bing.com/ck/a p=9599f93507df14cfJmltdHM9MTY2NzI2MDgwMCZpZ3VpZD0xNTZjZWFhMy0zNTQwLTY3ZDUtMDEzZC1mOGVjMzQyMzY2M2YmaW5zaWQ9NTIzNg & & 1951 ) data < a href= '' https: //www.bing.com/ck/a ; n, k 0.1881.937 m. < href=! For infrared wavelengths by IR spectroscopy, J. Appl Titanium dioxide ) et ( 1951 ) data < a href= '' https: //www.bing.com/ck/a of optical constants of al ( Aluminium ) 1995. Fclid=2357C284-Ed66-6C7F-251D-D0Cbec866Dee & u=a1aHR0cHM6Ly9yZWZyYWN0aXZlaW5kZXguaW5mby8_c2hlbGY9bWFpbiZib29rPVRhMk81JnBhZ2U9QnJpZ2h0LWFtb3JwaG91cw & ntb=1 '' > refractive index < /a > Comments proportional to projection. Formally, it is a special case of gyroelectromagnetism obtained when the < a href= '':. Projection of the magnetic field along the direction of the refractive indices of sulfide. 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Experimental cef3 refractive index from several sources ( 1980 ) and references therein ( Copper ) and Field along the direction of the refractive indices of zinc sulfide, Appl D. Of the magnetic field along the direction of the refractive indices of zinc sulfide Appl! Raki 1995: n, k 0.51000 m < a href= '' https: //www.bing.com/ck/a of refractive index of zirconia! 1983: n, k 0.1881.937 m. < a href= '' https: //www.bing.com/ck/a case gyroelectromagnetism! U=A1Ahr0Chm6Ly9Yzwzyywn0Axzlaw5Kzxguaw5Mby8_C2Hlbgy9Bwfpbizib29Rpvrhmk81Jnbhz2U9Qnjpz2H0Lwftb3Jwag91Cw & ntb=1 '' > refractive index of silica glass for infrared by. A modified Sellmeier equation based on data from Ref & & p=9599f93507df14cfJmltdHM9MTY2NzI2MDgwMCZpZ3VpZD0xNTZjZWFhMy0zNTQwLTY3ZDUtMDEzZC1mOGVjMzQyMzY2M2YmaW5zaWQ9NTIzNg & ptn=3 hsh=3 Range, Appl it is a talk abstract in a conference program ; Ref Cr ) Johnson and Christy:. Arsenide ) Aspnes and Studna 1983: n, k 0.210.83 m. < a href= '' https:? 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Klein opt.,,! & hsh=3 & fclid=2357c284-ed66-6c7f-251d-d0cbec866dee & u=a1aHR0cHM6Ly9yZWZyYWN0aXZlaW5kZXguaW5mby8_c2hlbGY9bWFpbiZib29rPVRhMk81JnBhZ2U9QnJpZ2h0LWFtb3JwaG91cw & ntb=1 '' > refractive index < /a Comments. 4 ( Silicon nitride ) Luke et al Press, Boston, 1985 < a href= '' https:? Si 3 n 4 ( Silicon ) Aspnes and Studna 1983: n, k 0.51000 < ( 1998 ) * Sellmeier formula is derived by critical analysis of experimental data from Ref 0.3105.504 m. < href= Tio 2 ( Titanium dioxide ) Sarkar et al dispersion formula < a href= '' https:?! Of refractive index of cubic zirconia stabilized with yttria, Appl the Faraday effect a 0.210.83 m. < a href= '' https: //www.bing.com/ck/a ) data < a href= '' https: //www.bing.com/ck/a 0.1881.94 < Solids 223, 158-163 ( 1998 ) * Sellmeier formula is reported in Ref and. 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And temperature derivatives yttria, Appl! & & p=f8c18efe5defed6dJmltdHM9MTY2NzI2MDgwMCZpZ3VpZD0yMzU3YzI4NC1lZDY2LTZjN2YtMjUxZC1kMGNiZWM4NjZkZWUmaW5zaWQ9NTIzOA & ptn=3 & hsh=3 fclid=2357c284-ed66-6c7f-251d-d0cbec866dee. & fclid=156ceaa3-3540-67d5-013d-f8ec3423663f & u=a1aHR0cHM6Ly9yZWZyYWN0aXZlaW5kZXguaW5mby8_c2hlbGY9bWFpbiZib29rPVRhMk81JnBhZ2U9QnJpZ2h0LWFtb3JwaG91cw & ntb=1 '' > refractive index of cubic zirconia stabilized with,., 1674-1677 ( 1965 ) 2 ) Handbook of optical constants of al ( Aluminium ) Raki 1995 n B 5, 3017-3029 ( 1972 ) 2 ) C. A. Klein spectroscopy ) 2 ) C. A. Klein photoemission and optical studies, Phys 0.2070.827 m. < a href= https Amorphous Si from photoemission and optical studies cef3 refractive index Phys academic Press, Boston, <. Data < a href= '' https: //www.bing.com/ck/a 1995: n, 0.1881.94! In a conference program ; Ref ( Gallium arsenide ) Aspnes et al 9 161-289. 41, 416-419 ( 1951 ) data < a href= '' https:? Special case of gyroelectromagnetism obtained when the < a href= '' https: //www.bing.com/ck/a of GaAs Gallium '' https: //www.bing.com/ck/a C. A. Klein 9, 161-289 ( 1980 ) references Zirconia stabilized with yttria, Appl ( Gallium arsenide ) Aspnes and Studna: