Fitting of the Zr 3d photoemission spectrum from metallic zirconium using a Doniach-Sunjic lineshape (Zr 3d forum)
Fitting of the Zr 3d photoemission spectrum for the element (research grade), data were provided by Vincent Crist (The use of the spectrum requires acknowledging XPS library website, https://xpslibrary.com/, the data is copyrighted). The main peak was fitted with one Doniach-Sunjic peak. The total background was modeled with a combination of a Tougaard type background and the interchannel coupling with valence band losses background.
Fitting of the Zr 3d photoemission spectrum from metallic zirconium using a Double-Lorentzian lineshape (Zr 3d forum)
Fitting of the Zr 3d photoemission spectrum for the element (research grade), data were provided by Vincent Crist (The use of the spectrum requires acknowledging XPS library website, https://xpslibrary.com/, the data is copyrighted). The main peak was fitted with one Double-Lorentzian peak. The total background was modeled with a combination of a Tougaard type background and the interchannel coupling with valence band losses background.
Fitting of the Zr 3d photoemission spectrum from metallic zirconium using a CR III lineshape (Zr 3d forum)
Fitting of the Zr 3d photoemission spectrum for the element (research grade), data were provided by Vincent Crist (The use of the spectrum requires acknowledging XPS library website, https://xpslibrary.com/, the data is copyrighted). The main peak was fitted with one Coupled-Resonances type III peak. The total background was modeled with a combination of a Tougaard type background and the interchannel coupling with valence band losses background.
Fitting of the Zr 3d photoemission spectrum from metallic zirconium using a CR II lineshape (Zr 3d forum)
Fitting of the Zr 3d photoemission spectrum for the element (research grade), data were provided by Vincent Crist (The use of the spectrum requires acknowledging XPS library website, https://xpslibrary.com/, the data is copyrighted). The main peak was fitted with one Coupled-Resonances type II peak and an additional Voigt peak. The total background was modeled with a combination of a Tougaard type background and the interchannel coupling with valence band losses background.
Fitting of the Y 3d photoemission spectrum from metallic yttrium using a Double-Lorentzian lineshape (Y 3d forum)
Fitting of the Y 3d photoemission spectrum for the element (research grade), data were provided by Vincent Crist (The use of the spectrum requires acknowledging XPS library website, https://xpslibrary.com/, the data is copyrighted). The main peak was fitted with one Double-Lorentzian doublet. The total background was modeled with a combination of a Tougaard type background and the interchannel coupling with valence band losses background.
Fitting of the Y 3d photoemission spectrum from metallic yttrium using a CR III lineshape (Y 3d forum)
Fitting of the Y 3d photoemission spectrum for the element (research grade), data were provided by Vincent Crist (The use of the spectrum requires acknowledging XPS library website, https://xpslibrary.com/, the data is copyrighted). The main peak was fitted with one Coupled-Resonances type III peak. The total background was modeled with a combination of a Tougaard type background and the interchannel coupling with valence band losses background.
Fitting of the Y 3d photoemission spectrum from metallic yttrium using a CR II lineshape (Y 3d forum)
Fitting of the Y 3d photoemission spectrum for the element (research grade), data were provided by Vincent Crist (The use of the spectrum requires acknowledging XPS library website, https://xpslibrary.com/, the data is copyrighted). The main peak was fitted with one Coupled-Resonances type II peak and an additional Voigt peak. The total background was modeled with a combination of a Tougaard type background and the interchannel coupling with valence band losses background.
Fitting of the Y 3d photoemission spectrum from metallic yttrium using Voigt peaks (Y 3d forum)
Fitting of the Y 3d photoemission spectrum for the element (research grade), data were provided by Vincent Crist (The use of the spectrum requires acknowledging XPS library website, https://xpslibrary.com/, the data is copyrighted). The main peak was fitted with three Voigt peaks. The total background was modeled with a combination of a Tougaard type background and the interchannel coupling with valence band losses background.
Fitting of the Sr 3d photoemission spectrum from metallic strontium using a Doniach-Sunjic lineshape (Sr 3d forum)
Fitting of the Sr 3d photoemission spectrum for the element (research grade), data were provided by Vincent Crist (The use of the spectrum requires acknowledging XPS library website, https://xpslibrary.com/, the data is copyrighted). The main peak was fitted with one asymmetric Doniach-Sunjic peak and an additional Voigt peak. The total background was modeled with a combination of a Tougaard type background and the interchannel coupling with valence band losses background.
Fitting of the Sr 3d photoemission spectrum from metallic strontium using a Double-Lorentzian lineshape (Sr 3d forum)
Fitting of the Sr 3d photoemission spectrum for the element (research grade), data were provided by Vincent Crist (The use of the spectrum requires acknowledging XPS library website, https://xpslibrary.com/, the data is copyrighted). The main peak was fitted with one asymmetric Double-Lorentzian lineshape. The total background was modeled with a combination of a Tougaard type background and the interchannel coupling with valence band losses background.
To show the fittings using CR lineshapes compared to the fittings with other lineshapes.
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