Multiple Slow Waves and Relevant Transverse Transmission and Confinement in Chirped Photonic Crystals

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Date

2014

Journal Title

Journal ISSN

Volume Title

Publisher

Optical Soc Amer

Open Access Color

GOLD

Green Open Access

Yes

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70

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186

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Abstract

The dispersion properties of rod-type chirped photonic crystals (PhCs) and non-channeled transmission in the direction of the variation of structural parameters from one cell of such a PhC to another are studied. Two types of configurations that enable multiple slow waves but differ in the utilized chirping scheme are compared. It is demonstrated that the multiple, nearly flat bands with a group index of refraction exceeding 180 can be obtained. For these bands, transmission is characterized by multiple narrow peaks of perfect transmission, strong field enhancement inside the slab, and large values of the Q-factor. Among the bands, there are some that show negative phase velocity. Symmetry with respect to the slab mid-plane must be kept in order to obtain constructive interferences that are necessary for reflection-free transmission. It is shown that 15 and more slow wave bands can be obtained in one configuration. The corresponding transmission peaks are well separated from each other, being the only significant feature of the transmission spectrum, while the Q-factor can exceed 10(5). The observed features are preserved in a wide range of the incidence angle variation. They can be used for tuning the locations and spectral widths of the transmission peaks. Some comparisons with the chirped multilayer structures have been carried out. (C) 2014 Optical Society of America

Description

Caglayan, Humeyra/0000-0002-0656-614X; Colak, Evrim/0000-0002-4961-5060; Cakmak, Atilla O/0000-0002-3933-3203; Serebryannikov, Andriy/0000-0001-6896-543X

Keywords

Guides, RESONATOR, Light, Resonator, Chirped photonic crystals, Chirped Photonic Crystals, LOCALIZATION, 535, Slow wave, GUIDES, LIGHT, Localization, Slow Wave

Fields of Science

01 natural sciences, 0103 physical sciences

Citation

WoS Q

Q2

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Q2
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OpenCitations Citation Count
6

Source

Optics Express

Volume

22

Issue

18

Start Page

21806

End Page

21819
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CrossRef : 6

Scopus : 5

PubMed : 1

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4

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2

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