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- W2020104183 abstract "Accounting for target self-absorption of X rays and the variation of the production cross section with proton energy, calculated yield ratios LK for 3.2 MeV protons for elements Fe through Br and K(3.2 MeV)K(1.6 MeV) for elements S through Br show sufficient variation with target thickness to permit a determination of effective thickness ranging from thin to infinitely thick. For uniform composition targets of a known fraction of elements Z < 10 PIXE quantitative analyses are possible on the basis of a yield ratio for an intense line in the spectrum of a target under analysis. Expressed in terms of thin target yield, those of thicker targets are smaller by a factor whose value is dominated by self-absorption in the case of low Z elements and by the decrease of production cross section for high Z elements. This line intensity ratio method is advantageous in that it involves only the use of PIXE spectra and their analyses and in that it results in an effective thickness for geometrically non-uniform targets when a proton beam of uniform areal density is used. Application of the method to intermediate thickness samples of air paniculate matter from an inertial impactor is discussed." @default.
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- W2020104183 date "1984-04-01" @default.
- W2020104183 modified "2023-10-14" @default.
- W2020104183 title "PIXE analysis of intermediate and thick targets via line intensity ratios" @default.
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- W2020104183 doi "https://doi.org/10.1016/0168-583x(84)90363-x" @default.
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