Dyakonov-Tamm wave at the planar interface of a chiral sculptured thin film and an isotropic dielectric material

Surface waves, named here as Dyakonov-Tamm waves, can exist at the planar interface of an isotropic dielectric material and a chiral sculptured thin film (STF). Due to the periodic nonhomogeneity of a chiral STF, the range of the refractive index of the isotropic material is smaller but the range of...

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Published inJournal of the European Optical Society. Rapid publications Vol. 2; p. 7021
Main Authors Lakhtakia, Akhlesh, Polo, John A.
Format Journal Article
LanguageEnglish
Published EDP Sciences 01.01.2007
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Abstract Surface waves, named here as Dyakonov-Tamm waves, can exist at the planar interface of an isotropic dielectric material and a chiral sculptured thin film (STF). Due to the periodic nonhomogeneity of a chiral STF, the range of the refractive index of the isotropic material is smaller but the range of the propagation direction in the interface plane is much larger, in comparison to those for the existence of Dyakonov waves at the planar interface of an isotropic dielectric material and a columnar thin film. Dyakonov-Tamm waves could therefore be detected more easily than Dyakonov waves.
AbstractList Surface waves, named here as Dyakonov-Tamm waves, can exist at the planar interface of an isotropic dielectric material and a chiral sculptured thin film (STF). Due to the periodic nonhomogeneity of a chiral STF, the range of the refractive index of the isotropic material is smaller but the range of the propagation direction in the interface plane is much larger, in comparison to those for the existence of Dyakonov waves at the planar interface of an isotropic dielectric material and a columnar thin film. Dyakonov-Tamm waves could therefore be detected more easily than Dyakonov waves.
Author Lakhtakia, Akhlesh
Polo, John A.
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StartPage 7021
SubjectTerms dyakonov wave
sculptured thin film
structural chirality
surface wave
tamm state
titanium oxide
Title Dyakonov-Tamm wave at the planar interface of a chiral sculptured thin film and an isotropic dielectric material
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