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Articles

Anisotropic effective medium theories: random orientation of scatterers

Pages 115-128 | Published online: 03 Apr 2012

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Read on this site (3)

A. Cherepanov & A. Sihvola. (1996) Internal electric field of anisotropic and bianisotropic spheres. Journal of Electromagnetic Waves and Applications 10:1, pages 79-91.
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D. I. Kaklamani & N. K. Uzunoglu. (1995) Radiation Properties of a Biaxially Anisotropic Dielectric Sphere Excited by a Dipole. Electromagnetics 15:6, pages 631-647.
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A.H. Sihvola & O.P.M. Pekonen. (1994) Dielectric mixtures with arbitrarily anisotropic components: focus on special gyrotropic effects. Journal of Electromagnetic Waves and Applications 8:12, pages 1605-1624.
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Articles from other publishers (6)

P. Varytis, P. A. Pantazopoulos & N. Stefanou. (2016) Enhanced Faraday rotation by crystals of core-shell magnetoplasmonic nanoparticles. Physical Review B 93:21.
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Christopher M. Wright, Tho Do Duy & Warrick Lawson. (2016) Absorption at 11 μm in the interstellar medium and embedded sources: evidence for crystalline silicates. Monthly Notices of the Royal Astronomical Society 457:2, pages 1593-1625.
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Paris Varytis, Nikolaos Stefanou, Aristi Christofi & Nikolaos Papanikolaou. (2015) Strong circular dichroism of core-shell magnetoplasmonic nanoparticles. Journal of the Optical Society of America B 32:6, pages 1063.
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A.H. Sihvola, J.O. Juntunen & P. Eratuuli. (1996) Macroscopic electromagnetic properties of bi-anisotropic mixtures. IEEE Transactions on Antennas and Propagation 44:6, pages 836-843.
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C. Matzler. (1996) Microwave permittivity of dry snow. IEEE Transactions on Geoscience and Remote Sensing 34:2, pages 573-581.
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M. Tateiba & Y. Nanbu. (1994) Numerical analysis of the effective propagation constant of a space where small spheres with high permittivity are randomly distributed. Numerical analysis of the effective propagation constant of a space where small spheres with high permittivity are randomly distributed.

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