Characterization of a laser filament-induced plasma in air at 10 kHz using optical emission spectroscopy

Fuente: arXiv
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Main Authors: Schroeder, Malte C., Löscher, Robin, Bibinov, Nikita, Korolov, Ihor, Awakowicz, Peter, Mussenbrock, Thomas, Saraceno, Clara J.
Format: Preprint
Published: 2025
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author Schroeder, Malte C.
Löscher, Robin
Bibinov, Nikita
Korolov, Ihor
Awakowicz, Peter
Mussenbrock, Thomas
Saraceno, Clara J.
author_facet Schroeder, Malte C.
Löscher, Robin
Bibinov, Nikita
Korolov, Ihor
Awakowicz, Peter
Mussenbrock, Thomas
Saraceno, Clara J.
contents The increasing availability of high-power Yb-based ultrafast laser-amplifier systems has opened the possibility of air filamentation at high repetition rates >1 kHz. In this new regime, accumulation effects cannot be ruled out, therefore, characterizing the plasma parameters and afterglow plasma-chemical kinetics becomes increasingly relevant. In this work, we use optical emission spectroscopy to measure nanosecond dynamics of gas temperature and electron temperature, species-specific decay times, and electron density of an atmospheric air laser filament produced by high average power femtosecond laser at a high repetition rate of 10 kHz. The molecular excitation mechanisms behind the nitrogen photoemissions are derived from vibrational distributions and temporal behavior of the studied emission bands. The presented diagnostic technique offers a complementary but more holistic measurement approach to optical probe schemes to characterize the laser-filament-induced plasma wake for high repetition rate filaments.
format Preprint
id arxiv_https___arxiv_org_abs_2508_03309
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Characterization of a laser filament-induced plasma in air at 10 kHz using optical emission spectroscopy
Schroeder, Malte C.
Löscher, Robin
Bibinov, Nikita
Korolov, Ihor
Awakowicz, Peter
Mussenbrock, Thomas
Saraceno, Clara J.
Plasma Physics
Optics
The increasing availability of high-power Yb-based ultrafast laser-amplifier systems has opened the possibility of air filamentation at high repetition rates >1 kHz. In this new regime, accumulation effects cannot be ruled out, therefore, characterizing the plasma parameters and afterglow plasma-chemical kinetics becomes increasingly relevant. In this work, we use optical emission spectroscopy to measure nanosecond dynamics of gas temperature and electron temperature, species-specific decay times, and electron density of an atmospheric air laser filament produced by high average power femtosecond laser at a high repetition rate of 10 kHz. The molecular excitation mechanisms behind the nitrogen photoemissions are derived from vibrational distributions and temporal behavior of the studied emission bands. The presented diagnostic technique offers a complementary but more holistic measurement approach to optical probe schemes to characterize the laser-filament-induced plasma wake for high repetition rate filaments.
title Characterization of a laser filament-induced plasma in air at 10 kHz using optical emission spectroscopy
topic Plasma Physics
Optics
url https://arxiv.org/abs/2508.03309