Polarization Rotation and Mode Splitting in Photonic Crystal Line-Defect Waveguides
In a line-defect waveguide of a planer photonic crystal (PhC), we found a new rotational state of polarized light, which exhibits “polarization rotation” on the PhC plane, when a phase mismatch m was added to the air-hole alignment of the waveguide, where mode splitting was simultaneously observed i...
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doaj-73ff47bed808418584dfdee4420e3b682020-11-24T22:24:47ZengFrontiers Media S.A.Frontiers in Physics2296-424X2018-08-01610.3389/fphy.2018.00085389955Polarization Rotation and Mode Splitting in Photonic Crystal Line-Defect WaveguidesMoïse Sotto0Isao Tomita1Isao Tomita2Kapil Debnath3Kapil Debnath4Shinichi Saito5Sustainable Electronic Technologies, Department of Electronics & Computer Science, Faculty of Physical Sciences and Engineering, University of Southampton, Southampton, United KingdomSustainable Electronic Technologies, Department of Electronics & Computer Science, Faculty of Physical Sciences and Engineering, University of Southampton, Southampton, United KingdomDepartment of Electrical & Computer Engineering, National Institute of Technology, Gifu College, Motosu, JapanSustainable Electronic Technologies, Department of Electronics & Computer Science, Faculty of Physical Sciences and Engineering, University of Southampton, Southampton, United KingdomElectronics & Electrical Communication Engineering, Indian Institute of Technology, Kharagpur, IndiaSustainable Electronic Technologies, Department of Electronics & Computer Science, Faculty of Physical Sciences and Engineering, University of Southampton, Southampton, United KingdomIn a line-defect waveguide of a planer photonic crystal (PhC), we found a new rotational state of polarized light, which exhibits “polarization rotation” on the PhC plane, when a phase mismatch m was added to the air-hole alignment of the waveguide, where mode splitting was simultaneously observed in the dispersion curve. To account for the polarization rotation together with the mode splitting, we propose a two-state model that is constructed from Schrödinger equation obtained from the equation for electromagnetic waves. The proposed two-state model gives an explanation on the relation between the polarization-rotational angle θ and the mismatch m and on its rotational direction (i.e., clockwise or anticlockwise direction) that depends on the mode. Using the two-state model, we also discuss the angular momenta of the polarized light in the PhC waveguide, which are directly related to the Stokes parameters that characterize the polarization rotations.https://www.frontiersin.org/article/10.3389/fphy.2018.00085/fullsilicon photonicspolarizationphotonic crystalphase mismatchStokes parameters |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Moïse Sotto Isao Tomita Isao Tomita Kapil Debnath Kapil Debnath Shinichi Saito |
spellingShingle |
Moïse Sotto Isao Tomita Isao Tomita Kapil Debnath Kapil Debnath Shinichi Saito Polarization Rotation and Mode Splitting in Photonic Crystal Line-Defect Waveguides Frontiers in Physics silicon photonics polarization photonic crystal phase mismatch Stokes parameters |
author_facet |
Moïse Sotto Isao Tomita Isao Tomita Kapil Debnath Kapil Debnath Shinichi Saito |
author_sort |
Moïse Sotto |
title |
Polarization Rotation and Mode Splitting in Photonic Crystal Line-Defect Waveguides |
title_short |
Polarization Rotation and Mode Splitting in Photonic Crystal Line-Defect Waveguides |
title_full |
Polarization Rotation and Mode Splitting in Photonic Crystal Line-Defect Waveguides |
title_fullStr |
Polarization Rotation and Mode Splitting in Photonic Crystal Line-Defect Waveguides |
title_full_unstemmed |
Polarization Rotation and Mode Splitting in Photonic Crystal Line-Defect Waveguides |
title_sort |
polarization rotation and mode splitting in photonic crystal line-defect waveguides |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Physics |
issn |
2296-424X |
publishDate |
2018-08-01 |
description |
In a line-defect waveguide of a planer photonic crystal (PhC), we found a new rotational state of polarized light, which exhibits “polarization rotation” on the PhC plane, when a phase mismatch m was added to the air-hole alignment of the waveguide, where mode splitting was simultaneously observed in the dispersion curve. To account for the polarization rotation together with the mode splitting, we propose a two-state model that is constructed from Schrödinger equation obtained from the equation for electromagnetic waves. The proposed two-state model gives an explanation on the relation between the polarization-rotational angle θ and the mismatch m and on its rotational direction (i.e., clockwise or anticlockwise direction) that depends on the mode. Using the two-state model, we also discuss the angular momenta of the polarized light in the PhC waveguide, which are directly related to the Stokes parameters that characterize the polarization rotations. |
topic |
silicon photonics polarization photonic crystal phase mismatch Stokes parameters |
url |
https://www.frontiersin.org/article/10.3389/fphy.2018.00085/full |
work_keys_str_mv |
AT moisesotto polarizationrotationandmodesplittinginphotoniccrystallinedefectwaveguides AT isaotomita polarizationrotationandmodesplittinginphotoniccrystallinedefectwaveguides AT isaotomita polarizationrotationandmodesplittinginphotoniccrystallinedefectwaveguides AT kapildebnath polarizationrotationandmodesplittinginphotoniccrystallinedefectwaveguides AT kapildebnath polarizationrotationandmodesplittinginphotoniccrystallinedefectwaveguides AT shinichisaito polarizationrotationandmodesplittinginphotoniccrystallinedefectwaveguides |
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