English

Accurate experimental determination of Gallium K- and L3-shell XRF fundamental parameters

Atomic Physics 2018-05-09 v1

Abstract

The fluorescence yield of the K- and L3-shell of gallium was determined using the radiometrically calibrated (reference-free) X-ray fluorescence instrumentation at the BESSY II synchrotron radiation facility. Simultaneous transmission and fluorescence signals from GaSe foils were obtained, resulting in K- and L3-shell fluorescence yield values consistent with existing database values(omega_Ga_K=0.515 +- 0.019, omega_Ga_L3=0.013 +- 0.001). For the first time, these standard combined uncertainties are obtained from a properly constructed Uncertainty Budget. These K-shell fluorescence yield values support Bambynek's semi-empirical compilation from 1972: these and other measurements yield a combined recommended value of omega_Ga_K=0.514 +- 0.010. Using the measured fluorescence yields together with production yields from reference Ga-implanted samples where the quantity of implanted Ga was determined at 1.3% traceable accuracy by Rutherford backscattering spectrometry, the K-shell and L3-subshell photoionization cross sections at selected incident photon energies were also determined and compared critically with the standard databases.

Keywords

Cite

@article{arxiv.1805.02951,
  title  = {Accurate experimental determination of Gallium K- and L3-shell XRF fundamental parameters},
  author = {Rainer Unterumsberger and Philipp Hönicke and Julien L. Colaux and Chris Jeynes and Malte Wansleben and Matthias Müller and Burkhard Beckhoff},
  journal= {arXiv preprint arXiv:1805.02951},
  year   = {2018}
}

Comments

17 pages, 6 figures