Opto-mechanical expulsion of individual micro-particles by laser-induced shockwave in air

Fuente: arXiv
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Autori principali: Schroeder, Malte C., Andral, Ugo, Wolf, Jean-Pierre
Natura: Preprint
Pubblicazione: 2022
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author Schroeder, Malte C.
Andral, Ugo
Wolf, Jean-Pierre
author_facet Schroeder, Malte C.
Andral, Ugo
Wolf, Jean-Pierre
contents It was recently demonstrated that laser filamentation was able to generate an optically transparent channel through cloud and fog for free-space optical communications applications. However, no quantitative measurement of the interaction between the laser-induced shockwave and the aerosol particles was carried out so far, leaving the precise nature of the clearing mechanism up for discussion. A critical question was the maximum distance at which the filament could still act on the aerosol particle. Distances widely exceeding the filament diameter and its energy reservoir exclude other potential clearing effects like shattering or explosion by direct exposure to the laser. Here, we quantify the force exerted by the shockwave on a single aerosol microparticle. The force is measured by observing the ejection and displacement of the particle when trapped in an optical tweezer. We demonstrate that even for distances ranging from 1.5 mm to 5.5 mm away from the filament, thus widely exceeding the filamentary region, an acoustic force of 500 pN to 8 nN (depending on the initial laser power) acts on the aerosol particle and expels it away from the optical trap.
format Preprint
id arxiv_https___arxiv_org_abs_2208_02015
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Opto-mechanical expulsion of individual micro-particles by laser-induced shockwave in air
Schroeder, Malte C.
Andral, Ugo
Wolf, Jean-Pierre
Optics
Applied Physics
It was recently demonstrated that laser filamentation was able to generate an optically transparent channel through cloud and fog for free-space optical communications applications. However, no quantitative measurement of the interaction between the laser-induced shockwave and the aerosol particles was carried out so far, leaving the precise nature of the clearing mechanism up for discussion. A critical question was the maximum distance at which the filament could still act on the aerosol particle. Distances widely exceeding the filament diameter and its energy reservoir exclude other potential clearing effects like shattering or explosion by direct exposure to the laser. Here, we quantify the force exerted by the shockwave on a single aerosol microparticle. The force is measured by observing the ejection and displacement of the particle when trapped in an optical tweezer. We demonstrate that even for distances ranging from 1.5 mm to 5.5 mm away from the filament, thus widely exceeding the filamentary region, an acoustic force of 500 pN to 8 nN (depending on the initial laser power) acts on the aerosol particle and expels it away from the optical trap.
title Opto-mechanical expulsion of individual micro-particles by laser-induced shockwave in air
topic Optics
Applied Physics
url https://arxiv.org/abs/2208.02015