Fourier optics with linearly tapered waveguides: light trapping and focusing

Fuente: arXiv
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Hauptverfasser: Gaafar, Mahmoud A., Renner, Hagen, Eich, Manfred, Petrov, Alexander Yu.
Format: Preprint
Veröffentlicht: 2021
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author Gaafar, Mahmoud A.
Renner, Hagen
Eich, Manfred
Petrov, Alexander Yu.
author_facet Gaafar, Mahmoud A.
Renner, Hagen
Eich, Manfred
Petrov, Alexander Yu.
contents An optical pulse asymptotically reaching zero group velocity in tapered waveguides can ultimately stop at a certain position in the taper accompanied by a strong spatial compression. This phenomenon can be also observed in spatio-temporal systems where the pulse velocity asymptotically reaches the velocity of a tapered front. The first system is well known from tapered plasmonic waveguides where adiabatic nano-focusing of light is observed. Its counterpart in the spatio-temporal system is the optical push broom effect where a nonlinear front collects and compresses the signal. Here, we use the slowly-varying envelope approximation to describe such systems. We demonstrate an analytical solution for the linear taper and the piecewise linear dispersion and show that the solution in this case resembles that of an optical lens in paraxial approximation. In particular, the spatial distribution of the focused light represents the Fourier transform of the signal at the input.
format Preprint
id arxiv_https___arxiv_org_abs_2103_01680
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Fourier optics with linearly tapered waveguides: light trapping and focusing
Gaafar, Mahmoud A.
Renner, Hagen
Eich, Manfred
Petrov, Alexander Yu.
Optics
An optical pulse asymptotically reaching zero group velocity in tapered waveguides can ultimately stop at a certain position in the taper accompanied by a strong spatial compression. This phenomenon can be also observed in spatio-temporal systems where the pulse velocity asymptotically reaches the velocity of a tapered front. The first system is well known from tapered plasmonic waveguides where adiabatic nano-focusing of light is observed. Its counterpart in the spatio-temporal system is the optical push broom effect where a nonlinear front collects and compresses the signal. Here, we use the slowly-varying envelope approximation to describe such systems. We demonstrate an analytical solution for the linear taper and the piecewise linear dispersion and show that the solution in this case resembles that of an optical lens in paraxial approximation. In particular, the spatial distribution of the focused light represents the Fourier transform of the signal at the input.
title Fourier optics with linearly tapered waveguides: light trapping and focusing
topic Optics
url https://arxiv.org/abs/2103.01680