DocumentCode :
731358
Title :
Linear discriminant analysis of electron beam effects on the relativistic laser-produced K-shell Al plasmas
Author :
Yilmaz, M. Fatih ; Danisman, Yusuf ; Safronova, A.S. ; Kantsyrev, V.L. ; Wiewior, P. ; Stafford, A. ; Shrestha, I.K. ; Shlyaptseva, V.V. ; Faenov, A.Y.
Author_Institution :
Eng. Dept., Turgut Ozal Univ., Ankara, Turkey
fYear :
2015
fDate :
24-28 May 2015
Firstpage :
1
Lastpage :
1
Abstract :
Summary form only given. Linear Discriminant Analysis (LDA) is applied and compared with the Principal Component Analysis (PCA) and the H- and He-like line ratio diagnostics to investigate the electron beam effects on the laser produced K-shell Al synthetic spectra1,2. The experiments were performed at the Leopard Laser Facility of NTF/UNR (1.057 μm Ti:Sapphire/Nd:glass laser system) with 0.8 ns pulses with 15 J of energy, focused into 10 μm diameter spot on the 50 μm thick flat Al foil target. The spectrum was obtained by the high resolution focusing spectrometer with spatial resolution using a spherically bent mica crystal. The plasma electron temperature, density and electron beam fractions of laser produced K-shell Al plasma (Shot 556) were extracted using coefficients of discriminant and principal components produced from the non-LTE collisionally radiative K-shell Al model. The modeled plasma electron temperatures and densities are about Te~270 eV and ne=3×1021 cm-3 in the presence of electron beams with fraction of f~0.05 and energy centered at ~10 keV.
Keywords :
aluminium; electron beams; electron density; plasma density; plasma diagnostics; plasma production by laser; plasma temperature; principal component analysis; relativistic plasmas; Al; electron beam effects; energy 15 J; hellium-like line ratio diagnostics; high resolution focusing spectrometer; hydrogen-like line ratio diagnostics; linear discriminant analysis; neodymium:glass laser system; principal component analysis; relativistic laser-produced K-shell aluminium plasmas; size 10 mum; size 50 mum; spatial resolution; time 0.8 ns; titanium:sapphire laser system; wavelength 1.057 mum; Electron beams; Linear discriminant analysis; Plasma temperature; Principal component analysis; Spatial resolution;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Plasma Sciences (ICOPS), 2015 IEEE International Conference on
Conference_Location :
Antalya
Type :
conf
DOI :
10.1109/PLASMA.2015.7179879
Filename :
7179879
Link To Document :
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