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Optical properties of materials

Chapter
Publication Date:
2024
abstract:
Starting from Maxwell equations and constitutive equations of a medium we consider the linear macroscopic optical response for homogeneous, isotropic, non-magnetic materials. The complex dielectric function and complex refractive index are derived with their connections with optical reflectance, transmittance and absorptance, for both unpolarized and polarized light. A few selected examples of optical response for solids (metals, semiconductors and insulators) are presented, together with the simplest classical and quantum models producing analytical expressions for the optical structures observed in experimental spectra. Analytical models give insights into optical response of materials and heterostructures, and should be used both to fit experimental data and simulate performances of electronic and photonic devices.
Iris type:
2.1 Contributo in volume (Capitolo o Saggio)
Keywords:
Absorption coefficient; Dielectric function; Dispersion relations; Drude-Lorentz models; Ellipsometry; Interband transitions; Intraband transitions; Maxwell's equations; Optical phonon response; Optical spectra; Polarized light; Reflection and transmission; Refractive index; Sellmeier model; Urbach-Tauc model
List of contributors:
Guizzetti, Giorgio; Patrini, Maddalena
Authors of the University:
PATRINI MADDALENA
Handle:
https://iris.unipv.it/handle/11571/1515863
Book title:
Encyclopedia of Condensed Matter Physics
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URL

https://shop.elsevier.com/books/encyclopedia-of-condensed-matter-physics/chakraborty/978-0-323-90800-9
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