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  2. Refractive index and extinction coefficient of thin film ...

    en.wikipedia.org/wiki/Refractive_index_and...

    A. R. Forouhi and I. Bloomer deduced dispersion equations for the refractive index, n, and extinction coefficient, k, which were published in 1986 [1] and 1988. [2] The 1986 publication relates to amorphous materials, while the 1988 publication relates to crystalline.

  3. List of refractive indices - Wikipedia

    en.wikipedia.org/wiki/List_of_refractive_indices

    Standard refractive index measurements are taken at the "yellow doublet" sodium D line, with a wavelength (λ) of 589 nanometers. There are also weaker dependencies on temperature , pressure / stress , etc., as well on precise material compositions (presence of dopants , etc.); for many materials and typical conditions, however, these ...

  4. Forouhi–Bloomer model - Wikipedia

    en.wikipedia.org/wiki/Forouhi–Bloomer_model

    These parameters approximate amorphous silicon. [1] The Forouhi–Bloomer model is a mathematical formula for the frequency dependence of the complex-valued refractive index. The model can be used to fit the refractive index of amorphous and crystalline semiconductor and dielectric materials at energies near and greater than their optical band gap.

  5. How to understand the Air Quality Index - AOL

    www.aol.com/news/how-to-understand-the-air...

    You should have good air quality and little or no risk from pollution. When the index reaches a value of between 51 and 100, that's a code yellow, which is moderate cause for concern.

  6. List of physical properties of glass - Wikipedia

    en.wikipedia.org/wiki/List_of_physical...

    Toggle the table of contents. List of physical properties of glass. Add languages. ... Refractive index n D [8] at 20 °C 1.518 1.473 1.531 1.650 1.459 1.608 1.7

  7. Refractive index - Wikipedia

    en.wikipedia.org/wiki/Refractive_index

    The refractive index of materials varies with the wavelength (and frequency) of light. [27] This is called dispersion and causes prisms and rainbows to divide white light into its constituent spectral colors. [28] As the refractive index varies with wavelength, so will the refraction angle as light goes from one material to another.

  8. Tauc–Lorentz model - Wikipedia

    en.wikipedia.org/wiki/Tauc–Lorentz_model

    The model has been used to fit the complex refractive index of amorphous semiconductor materials at frequencies greater than their optical band gap. The dispersion relation bears the names of Jan Tauc and Hendrik Lorentz, whose previous works [1] were combined by G. E. Jellison and F. A. Modine to create the model.

  9. NJ had poor air quality, orange skies last June. Will ... - AOL

    www.aol.com/nj-had-poor-air-quality-082624624.html

    Air monitors near the New Brunswick campus registered a high of 330 micrograms per cubic meter of particles — about 10 times above New Jersey's air quality standard — over four hours on June 7 ...

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