Manipulation of Energy Flow with X-Type Vortex

In this study, a new method for manipulating energy flow in a 3D vector field is proposed. In this method, an azimuthally-polarized beam with a noncanonical vortex, the X-type vortex, is focused in a high-numerical aperture system. It is found that, instead of the invariance of the energy flow which...

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Main Authors: Han Zhang, Tianhu Zhang, Xinying Zhao, Xiaoyan Pang
Format: Article
Language:English
Published: MDPI AG 2022-12-01
Series:Photonics
Subjects:
Online Access:https://www.mdpi.com/2304-6732/9/12/998
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author Han Zhang
Tianhu Zhang
Xinying Zhao
Xiaoyan Pang
author_facet Han Zhang
Tianhu Zhang
Xinying Zhao
Xiaoyan Pang
author_sort Han Zhang
collection DOAJ
description In this study, a new method for manipulating energy flow in a 3D vector field is proposed. In this method, an azimuthally-polarized beam with a noncanonical vortex, the X-type vortex, is focused in a high-numerical aperture system. It is found that, instead of the invariance of the energy flow which is characteristic of the traditional vortex (i.e., canonical vortex), both the longitudinal and the transverse energy flows in virtue of the X-type vortex rotate around the beam center as the beam propagates, and this rotational behavior (including the maxima location and the rotational angle) can be adjusted by the anisotropic parameter and the order the X-type vortex. Through defining a complex transverse Poynting field and applying the equivalence principle, the transverse energy flow and its topological reactions are discussed in the focal plane. Our result shows that, by changing the anisotropic parameter of the X-type vortex, rich topological reactions will occur, resulting in various distribution patterns of the energy flow, such as multi vortex-type singularities around the beam center. Our research demonstrates newly-observed features of the X-type vortex and also provides a simple method to manipulate energy flows both along longitudinal and transverse directions, which will be useful in optical manipulations.
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spelling doaj.art-40fcd8f6d33a4591adf086902efdd77d2023-11-24T17:26:08ZengMDPI AGPhotonics2304-67322022-12-0191299810.3390/photonics9120998Manipulation of Energy Flow with X-Type VortexHan Zhang0Tianhu Zhang1Xinying Zhao2Xiaoyan Pang3School of Electronics and Information, Northwestern Polytechnical University, Xi’an 710072, ChinaSchool of Electronics and Information, Northwestern Polytechnical University, Xi’an 710072, ChinaSchool of Physics & Information Technology, Shaanxi Normal University, Xi’an 710061, ChinaSchool of Electronics and Information, Northwestern Polytechnical University, Xi’an 710072, ChinaIn this study, a new method for manipulating energy flow in a 3D vector field is proposed. In this method, an azimuthally-polarized beam with a noncanonical vortex, the X-type vortex, is focused in a high-numerical aperture system. It is found that, instead of the invariance of the energy flow which is characteristic of the traditional vortex (i.e., canonical vortex), both the longitudinal and the transverse energy flows in virtue of the X-type vortex rotate around the beam center as the beam propagates, and this rotational behavior (including the maxima location and the rotational angle) can be adjusted by the anisotropic parameter and the order the X-type vortex. Through defining a complex transverse Poynting field and applying the equivalence principle, the transverse energy flow and its topological reactions are discussed in the focal plane. Our result shows that, by changing the anisotropic parameter of the X-type vortex, rich topological reactions will occur, resulting in various distribution patterns of the energy flow, such as multi vortex-type singularities around the beam center. Our research demonstrates newly-observed features of the X-type vortex and also provides a simple method to manipulate energy flows both along longitudinal and transverse directions, which will be useful in optical manipulations.https://www.mdpi.com/2304-6732/9/12/998Poynting vectoroptical vortexsingularityenergy flow
spellingShingle Han Zhang
Tianhu Zhang
Xinying Zhao
Xiaoyan Pang
Manipulation of Energy Flow with X-Type Vortex
Photonics
Poynting vector
optical vortex
singularity
energy flow
title Manipulation of Energy Flow with X-Type Vortex
title_full Manipulation of Energy Flow with X-Type Vortex
title_fullStr Manipulation of Energy Flow with X-Type Vortex
title_full_unstemmed Manipulation of Energy Flow with X-Type Vortex
title_short Manipulation of Energy Flow with X-Type Vortex
title_sort manipulation of energy flow with x type vortex
topic Poynting vector
optical vortex
singularity
energy flow
url https://www.mdpi.com/2304-6732/9/12/998
work_keys_str_mv AT hanzhang manipulationofenergyflowwithxtypevortex
AT tianhuzhang manipulationofenergyflowwithxtypevortex
AT xinyingzhao manipulationofenergyflowwithxtypevortex
AT xiaoyanpang manipulationofenergyflowwithxtypevortex