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research article

Slow light engineering in resonant photonic crystal line-defect waveguides

Khatibi Moghaddam, Maliheh  
•
Fleury, Romain  
August 30, 2019
Optics Express

Slow light plays an outstanding role in a wide variety of optical applications, from quantum information to optical processing. While slow optical guiding in photonic crystal waveguides is typically based on Bragg band gaps occurring in non-resonant photonic crystals, here we explore the possibility to leverage the hybridization photonic band gaps of resonant photonic crystals to induce a different form of slow light guiding. We study a line-defect waveguide in a periodic structure composed of high-permittivity resonant dielectric objects and exploit the different guiding mechanisms associated with the hybridization band gap to induce slow light in the resonant phase of the crystal. We demonstrate quantitatively that this method can, in principle, produce high group indices over large bandwidths with potential values of group-index bandwidth products up to 0.67.

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Type
research article
DOI
10.1364/OE.27.026229
Author(s)
Khatibi Moghaddam, Maliheh  
Fleury, Romain  
Date Issued

2019-08-30

Published in
Optics Express
Volume

27

Issue

18

Start page

26229

End page

26238

Subjects

Effective refractive index

•

Mie resonances

•

Optical delay lines

•

Photonic crystal waveguides

•

Total internal reflection

•

Wave propagation

Note

© 2019 Optical Society of America under the terms of the OSA Open Access Publishing Agreement.

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LWE  
Available on Infoscience
September 2, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/160764
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