Beam propagation management in a fractional Schrödinger equation

Abstract Generalization of Fractional Schrödinger equation (FSE) into optics is fundamentally important, since optics usually provides a fertile ground where FSE-related phenomena can be effectively observed. Beam propagation management is a topic of considerable interest in the field of optics. Her...

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Main Authors: Changming Huang, Liangwei Dong
Format: Article
Language:English
Published: Nature Publishing Group 2017-07-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-017-05926-5
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spelling doaj-f750194d1f8b463dae36b7794b1083042020-12-08T02:52:23ZengNature Publishing GroupScientific Reports2045-23222017-07-01711810.1038/s41598-017-05926-5Beam propagation management in a fractional Schrödinger equationChangming Huang0Liangwei Dong1Department of Physics, Shaanxi University of Science & TechnologyDepartment of Physics, Shaanxi University of Science & TechnologyAbstract Generalization of Fractional Schrödinger equation (FSE) into optics is fundamentally important, since optics usually provides a fertile ground where FSE-related phenomena can be effectively observed. Beam propagation management is a topic of considerable interest in the field of optics. Here, we put forward a simple scheme for the realization of propagation management of light beams by introducing a double-barrier potential into the FSE. Transmission, partial transmission/reflection, and total reflection of light fields can be controlled by varying the potential depth. Oblique input beams with arbitrary distributions obey the same propagation dynamics. Some unique properties, including strong self-healing ability, high capacity of resisting disturbance, beam reshaping, and Goos-Hänchen-like shift are revealed. Theoretical analysis results are qualitatively in agreements with the numerical findings. This work opens up new possibilities for beam management and can be generalized into other fields involving fractional effects.https://doi.org/10.1038/s41598-017-05926-5
collection DOAJ
language English
format Article
sources DOAJ
author Changming Huang
Liangwei Dong
spellingShingle Changming Huang
Liangwei Dong
Beam propagation management in a fractional Schrödinger equation
Scientific Reports
author_facet Changming Huang
Liangwei Dong
author_sort Changming Huang
title Beam propagation management in a fractional Schrödinger equation
title_short Beam propagation management in a fractional Schrödinger equation
title_full Beam propagation management in a fractional Schrödinger equation
title_fullStr Beam propagation management in a fractional Schrödinger equation
title_full_unstemmed Beam propagation management in a fractional Schrödinger equation
title_sort beam propagation management in a fractional schrödinger equation
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2017-07-01
description Abstract Generalization of Fractional Schrödinger equation (FSE) into optics is fundamentally important, since optics usually provides a fertile ground where FSE-related phenomena can be effectively observed. Beam propagation management is a topic of considerable interest in the field of optics. Here, we put forward a simple scheme for the realization of propagation management of light beams by introducing a double-barrier potential into the FSE. Transmission, partial transmission/reflection, and total reflection of light fields can be controlled by varying the potential depth. Oblique input beams with arbitrary distributions obey the same propagation dynamics. Some unique properties, including strong self-healing ability, high capacity of resisting disturbance, beam reshaping, and Goos-Hänchen-like shift are revealed. Theoretical analysis results are qualitatively in agreements with the numerical findings. This work opens up new possibilities for beam management and can be generalized into other fields involving fractional effects.
url https://doi.org/10.1038/s41598-017-05926-5
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