Full resonant transmission of semi-guided planar waves through slab waveguide steps at oblique incidence
Sheets of slab waveguides with sharp corners are investigated. By means of rigorous numerical experiments, we look at oblique incidence of semi-guided plane waves. Radiation losses vanish beyond a certain critical angle of incidence. One can thus realize lossless propagation through 90-degree corner...
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Published in | arXiv.org |
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Main Authors | , , |
Format | Paper Journal Article |
Language | English |
Published |
Ithaca
Cornell University Library, arXiv.org
28.10.2015
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Online Access | Get full text |
ISSN | 2331-8422 |
DOI | 10.48550/arxiv.1502.07619 |
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Abstract | Sheets of slab waveguides with sharp corners are investigated. By means of rigorous numerical experiments, we look at oblique incidence of semi-guided plane waves. Radiation losses vanish beyond a certain critical angle of incidence. One can thus realize lossless propagation through 90-degree corner configurations, where the remaining guided waves are still subject to pronounced reflection and polarization conversion. A system of two corners can be viewed as a structure akin to a Fabry-Perot-interferometer. By adjusting the distance between the two partial reflectors, here the 90-degree corners, one identifies step-like configurations that transmit the semi-guided plane waves without radiation losses, and virtually without reflections. Simulations of semi-guided beams with in-plane wide Gaussian profiles show that the effect survives in a true 3-D framework. |
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AbstractList | Sheets of slab waveguides with sharp corners are investigated. By means of
rigorous numerical experiments, we look at oblique incidence of semi-guided
plane waves. Radiation losses vanish beyond a certain critical angle of
incidence. One can thus realize lossless propagation through 90-degree corner
configurations, where the remaining guided waves are still subject to
pronounced reflection and polarization conversion. A system of two corners can
be viewed as a structure akin to a Fabry-Perot-interferometer. By adjusting the
distance between the two partial reflectors, here the 90-degree corners, one
identifies step-like configurations that transmit the semi-guided plane waves
without radiation losses, and virtually without reflections. Simulations of
semi-guided beams with in-plane wide Gaussian profiles show that the effect
survives in a true 3-D framework. Sheets of slab waveguides with sharp corners are investigated. By means of rigorous numerical experiments, we look at oblique incidence of semi-guided plane waves. Radiation losses vanish beyond a certain critical angle of incidence. One can thus realize lossless propagation through 90-degree corner configurations, where the remaining guided waves are still subject to pronounced reflection and polarization conversion. A system of two corners can be viewed as a structure akin to a Fabry-Perot-interferometer. By adjusting the distance between the two partial reflectors, here the 90-degree corners, one identifies step-like configurations that transmit the semi-guided plane waves without radiation losses, and virtually without reflections. Simulations of semi-guided beams with in-plane wide Gaussian profiles show that the effect survives in a true 3-D framework. |
Author | stner, Jens Hammer, Manfred Hildebrandt, Andre |
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BackLink | https://doi.org/10.1109/JLT.2015.2502431$$DView published paper (Access to full text may be restricted) https://doi.org/10.48550/arXiv.1502.07619$$DView paper in arXiv |
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Snippet | Sheets of slab waveguides with sharp corners are investigated. By means of rigorous numerical experiments, we look at oblique incidence of semi-guided plane... Sheets of slab waveguides with sharp corners are investigated. By means of rigorous numerical experiments, we look at oblique incidence of semi-guided plane... |
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SubjectTerms | Computer simulation Configurations Corners Critical angle Gaussian beams (optics) Incidence angle Physics - Optics Plane waves Reflectors Wave propagation Waveguides |
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Title | Full resonant transmission of semi-guided planar waves through slab waveguide steps at oblique incidence |
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