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Tomography of homogenized laser-induced plasma by Radon transform technique

  • Simon Eschlböck-Fuchs
  • , A. Demidov
  • , I. Gornuskin
  • , T. Schmid
  • , Roman Rössler
  • , Norbert Huber
  • , Ulrich Panne
  • , Johannes David Pedarnig

Publikation: Beitrag in FachzeitschriftArtikelBegutachtung

Abstract

Tomography of a laser-induced plasma in air is performed by inverse Radon transform of angle-resolved plasma images. Plasmas were induced by single laser pulses (SP), double pulses (DP) in collinear geometry, and by a combination of single laser pulses with pulsed arc discharges (SP-AD). Images of plasmas on metallurgical steel slags were taken at delay times suitable for calibration-free laser-induced breakdown spectroscopy (CF-LIBS). Delays ranged from few microseconds for SP and DP up to tens of microseconds for SP-AD excitation. The white-light and the spectrally resolved emissivity ε(x,y,z) was reconstructed for the three plasma excitation schemes. The electron number density Ne(x,y,z) and plasma temperature Te(x,y,z) were determined from Mg and Mn emission lines in reconstructed spectra employing the Saha-Boltzmann plot method. The SP plasma revealed strongly inhomogeneous emissivity and plasma temperature. Re-excitation of plasma by a second laser pulse (DP) and by an arc discharge (SP-AD) homogenized the plasma and reduced the spatial variation of ε and Te. The homogenization of a plasma is a promising approach to increase the accuracy of calibration-free LIBS analysis of complex materials.
OriginalspracheEnglisch
Seiten (von - bis)59-67
Seitenumfang9
FachzeitschriftSpectrochimica Acta Part B: Atomic Spectroscopy
Volume123
DOIs
PublikationsstatusVeröffentlicht - 01 Sep. 2016

Wissenschaftszweige

  • 210002 Nanobiotechnologie
  • 210004 Nanomaterialien
  • 103 Physik, Astronomie
  • 103006 Chemische Physik
  • 103008 Experimentalphysik
  • 103015 Kondensierte Materie
  • 103018 Materialphysik
  • 210005 Nanophotonik
  • 103009 Festkörperphysik
  • 103016 Laserphysik
  • 103021 Optik
  • 103022 Plasmaphysik
  • 103033 Supraleitung
  • 103040 Photonik

JKU-Schwerpunkte

  • Nano-, Bio- and Polymer-Systems: From Structure to Function
  • TNF Allgemein

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