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Journal ArticleDOI

Properties of one-dimensional photonic crystals containing single-negative materials.

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TLDR
A photonic quantum-well structure based on zero-phi(eff) gaps is proposed as a multiple channeled filter that is compact and robust against disorder.
Abstract
The transmission properties of a one-dimensional photonic crystal containing two kinds of single-negative (permittivity- or permeability-negative) media are studied theoretically. We show that this structure can possess a type of photonic gap with zero effective phase $({\ensuremath{\phi}}_{\text{eff}})$. The zero-${\ensuremath{\phi}}_{\text{eff}}$ gap distinguishes itself from a Bragg gap in that it is invariant with a change of scale length and is insensitive to thickness fluctuation. In contrast to a photonic gap corresponding to zero averaged refractive index, the zero-${\ensuremath{\phi}}_{\text{eff}}$ gap can be made very wide by varying the ratio of the thicknesses of two media. An equivalent transmission-line model is utilized to explain the properties. A photonic quantum-well structure based on zero-${\ensuremath{\phi}}_{\text{eff}}$ gaps is proposed as a multiple channeled filter that is compact and robust against disorder.

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Citations
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Omnidirectional gap and defect mode of one-dimensional photonic crystals with single-negative materials

TL;DR: In this paper, a new type of omnidirectional gaps is theoretically found in one-dimensional photonic crystals (1DPCs) composed of two kinds of single-negative (SNG) materials.
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Hyperbolic metamaterials: From dispersion manipulation to applications

TL;DR: Hyperbolic metamaterials (HMMs) as mentioned in this paper are an important class of artificial anisotropic materials with hyperbolic IFCs, which have been intensively investigated.
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Optimization of radiative heat transfer in hyperbolic metamaterials for thermophotovoltaic applications.

TL;DR: This work shows that both huge values and frequency selectivity are achievable for the radiative heat transfer in hyperbolic multilayer stacks and suggests an approach to the optimal design of such metamaterials.
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Hyperbolic Metamaterials: From Dispersion Manipulation to Application

TL;DR: In this article, the basic physical properties of hyperbolic metamaterials (HMMs) are introduced and some potential applications associated with Hyperbolic dispersion are also introduced.
Journal ArticleDOI

Optical properties of one-dimensional photonic crystals containing graphene sheets

TL;DR: In this article, the transmission properties of a one-dimensional photonic crystal containing graphene monolayers were investigated using transfer matrix method and it was shown that the structure has a new type of the photonic band gap in the THz region which is almost omnidirectional and insensitive to the polarization.