Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Airy fiber: waveguides array coupling based light beam control method

View through CrossRef
Recently, Airy beam as a kind of non-diffracting beam, has attracted a great deal of attention due to its unique properties to have propagation-invariant intensity profile, remain transverse accelerating and exhibit self-healing features. Therefore, Airy beams have found many potential applications, such as optical micro-manipulation, imaging technology, surface plasmon polaritons and laser micromachining. Airy optical fiber as a kind of waveguide device can be applied for the Airy beam generation, carry out the exploration of new Airy fiber and expand the Airy beam application range, has important practical significance. In this paper, we give an systematical introduction from the view of the Airy beam working principle, Airy fiber structure design, Airy fiber beam generated internal mechanism, Airy beam wavelength response characteristics, and Airy fiber applications.
Acta Physica Sinica, Chinese Physical Society and Institute of Physics, Chinese Academy of Sciences
Title: Airy fiber: waveguides array coupling based light beam control method
Description:
Recently, Airy beam as a kind of non-diffracting beam, has attracted a great deal of attention due to its unique properties to have propagation-invariant intensity profile, remain transverse accelerating and exhibit self-healing features.
Therefore, Airy beams have found many potential applications, such as optical micro-manipulation, imaging technology, surface plasmon polaritons and laser micromachining.
Airy optical fiber as a kind of waveguide device can be applied for the Airy beam generation, carry out the exploration of new Airy fiber and expand the Airy beam application range, has important practical significance.
In this paper, we give an systematical introduction from the view of the Airy beam working principle, Airy fiber structure design, Airy fiber beam generated internal mechanism, Airy beam wavelength response characteristics, and Airy fiber applications.

Related Results

Atmospheric waveguides, quasi-stationary waves, and temperature extremes
Atmospheric waveguides, quasi-stationary waves, and temperature extremes
Atmospheric waveguides can affect the propagation of Rossby waves, and have been hypothesized to be associated with amplified quasi-stationary waves and thus to extreme weather eve...
Average capacity analysis of FSO system with Airy beam as carrier over exponentiated Weibull channels
Average capacity analysis of FSO system with Airy beam as carrier over exponentiated Weibull channels
Based on scintillation index of Airy beam and exponentiated Weibull channel model, analytical expressions of average channel capacity for free-space optical (FSO) communication lin...
Design, transform and control of optical field in discrete optical system: an example
Design, transform and control of optical field in discrete optical system: an example
AbstractA discrete optical system can broaden the spatial distribution of the input light through optical coupling in array waveguides, just like diffraction in continuous media. H...
BER Analysis of FSO System with Airy Beam as Carrier Over Exponentiated Weibull Channel Model
BER Analysis of FSO System with Airy Beam as Carrier Over Exponentiated Weibull Channel Model
Abstract Average Bit Error Rate (BER) expression of free-space optical (FSO) communication links with Airy beam as signal carrier under weak atmospheric turbulence and on-o...
Multiple Airy beam generation by a digital micro mirror device
Multiple Airy beam generation by a digital micro mirror device
The Airy beam is the solution of Maxwell's wave equation and since this equation is linear, a superposition of Airy beams still remains the solution of the wave equation. In this p...
Non-Hermitian mode management in optical fibers and waveguides
Non-Hermitian mode management in optical fibers and waveguides
(English) This thesis uncovers a novel approach to tailoring optical beam transformations in GRaded INdex (GRIN) MultiMode Fibers (MMFs) through non-Hermitian mode management. Rece...
Photorefractive self-focusing of Airy beams : nonlinear interactions and all-optical waveguiding
Photorefractive self-focusing of Airy beams : nonlinear interactions and all-optical waveguiding
Autofocalisation photoréfractive de faisceaux d’Airy : interactions non linéaires et guidage tout optique La thèse présente l’étude de la propagation et de l’auto-f...
Design and Analysis of Low -Loss Coupling between Fiber Array and Silicon Waveguides Based on Inclined End-face Coupling
Design and Analysis of Low -Loss Coupling between Fiber Array and Silicon Waveguides Based on Inclined End-face Coupling
This paper presents a low-loss and high-reliability optical coupling technique between silicon photodetector array chips and fiber arrays using end-face butt-coupling. The techniqu...

Back to Top