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Scopus: Year 1983-2021
Band-edge field enhanced nonlinear cross-polarized wave generation in photonic bandgap structure
Publication:
Band-edge field enhanced nonlinear cross-polarized wave generation in photonic bandgap structure
0
0
Issued Date
2019
Resource Type
Article
File Type
application/pdf
ISSN
10944087
DOI
10.1364/OE.27.011196
Other identifier(s)
2-s2.0-85064449927
Rights Holder(s)
Scopus
Bibliographic Citation
Optics Express. Vol 27, No.8 (2019), p.11196-11204
Suggested Citation
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Wicharn S., Buranasiri P.
Band-edge field enhanced nonlinear cross-polarized wave generation in photonic bandgap structure.
Optics Express. Vol 27, No.8 (2019), p.11196-11204.
doi:10.1364/OE.27.011196
Retrieved from:
https://hdl.handle.net/20.500.14740/5378
Title
Band-edge field enhanced nonlinear cross-polarized wave generation in photonic bandgap structure
Author(s)
Wicharn S.
Buranasiri P.
Abstract
We report on the enhancement of nonlinear cross-polarized wave (XPW) generation in a one-dimensional photonic band-gap structure, which is composed of two periodic arrangements of barium-fluoride and silicon-dioxide through numerical simulations. By detuning the pump-field wavelength to the band-edge position of the photonic band-gap spectrum, the electric field at this wavelength would be resonant and then the field enhancement mechanism arises immediately. Under band-edge field enhancement condition, we found that the conversion efficiencies of XPW generation was implicitly enhanced even without phase-matched condition from the exact angle of crystallographic axis orientation. © 2019 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
Subject(s)
Barium compounds
Electric fields
Energy gap
Fluorine compounds
Phase matching
Photonics
Silica
Band edge position
Barium fluoride
Cross-polarized
Crystallographic axis
Detunings
Field enhancement
Photonic band-gap structures
Pump fields
Photonic band gap
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https://hdl.handle.net/20.500.14740/5378
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Scopus: Year 1983-2021
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