Spectroscopic imaging of tin vapor near plasma threshold

We report on the spectroscopic imaging of tin vapors laser generated from thin liquid tin targets using laser intensities around the threshold of plasma formation. Specifically, we study tin vapor using an extinction imaging method in the UV regime (230–400 nm) to obtain 40-µm spatial-resolution ima...

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Main Authors: D. J. Engels, H. K. Schubert, M. Kharbedia, W. Ubachs, O. O. Versolato
Format: Article
Language:English
Published: American Physical Society 2025-06-01
Series:Physical Review Research
Online Access:http://doi.org/10.1103/f8l3-cyvx
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author D. J. Engels
H. K. Schubert
M. Kharbedia
W. Ubachs
O. O. Versolato
author_facet D. J. Engels
H. K. Schubert
M. Kharbedia
W. Ubachs
O. O. Versolato
author_sort D. J. Engels
collection DOAJ
description We report on the spectroscopic imaging of tin vapors laser generated from thin liquid tin targets using laser intensities around the threshold of plasma formation. Specifically, we study tin vapor using an extinction imaging method in the UV regime (230–400 nm) to obtain 40-µm spatial-resolution images with 10-cm^{−1}-resolution spectra 100ns after vaporization. The vapor is created by irradiating a nonoxidized free-flying thin film with a nanosecond laser pulse, the intensity of which is varied between 1and130×10^{7}W/cm^{2}, from below to above the threshold of producing plasma. Vapors created with laser intensities below 40×10^{7}W/cm^{2} exhibit a spatially homogeneous neutral atomic component, with a temperature around 3000 K, as well as a broadband component due to nanoparticles. The morphology and composition of the vapor change as the plasma forms during vaporization at higher intensities, with the temperature of the vapor rising to 8000K at the highest intensity. At these intensities, the broadband component disappears, indicating that it is a vapor composed only of free atoms.
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institution Kabale University
issn 2643-1564
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publisher American Physical Society
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series Physical Review Research
spelling doaj-art-29e34e60a2444491bd5dbb2dd95fdbb62025-08-20T03:27:13ZengAmerican Physical SocietyPhysical Review Research2643-15642025-06-017202330710.1103/f8l3-cyvxSpectroscopic imaging of tin vapor near plasma thresholdD. J. EngelsH. K. SchubertM. KharbediaW. UbachsO. O. VersolatoWe report on the spectroscopic imaging of tin vapors laser generated from thin liquid tin targets using laser intensities around the threshold of plasma formation. Specifically, we study tin vapor using an extinction imaging method in the UV regime (230–400 nm) to obtain 40-µm spatial-resolution images with 10-cm^{−1}-resolution spectra 100ns after vaporization. The vapor is created by irradiating a nonoxidized free-flying thin film with a nanosecond laser pulse, the intensity of which is varied between 1and130×10^{7}W/cm^{2}, from below to above the threshold of producing plasma. Vapors created with laser intensities below 40×10^{7}W/cm^{2} exhibit a spatially homogeneous neutral atomic component, with a temperature around 3000 K, as well as a broadband component due to nanoparticles. The morphology and composition of the vapor change as the plasma forms during vaporization at higher intensities, with the temperature of the vapor rising to 8000K at the highest intensity. At these intensities, the broadband component disappears, indicating that it is a vapor composed only of free atoms.http://doi.org/10.1103/f8l3-cyvx
spellingShingle D. J. Engels
H. K. Schubert
M. Kharbedia
W. Ubachs
O. O. Versolato
Spectroscopic imaging of tin vapor near plasma threshold
Physical Review Research
title Spectroscopic imaging of tin vapor near plasma threshold
title_full Spectroscopic imaging of tin vapor near plasma threshold
title_fullStr Spectroscopic imaging of tin vapor near plasma threshold
title_full_unstemmed Spectroscopic imaging of tin vapor near plasma threshold
title_short Spectroscopic imaging of tin vapor near plasma threshold
title_sort spectroscopic imaging of tin vapor near plasma threshold
url http://doi.org/10.1103/f8l3-cyvx
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AT ooversolato spectroscopicimagingoftinvapornearplasmathreshold