X-Ray Fluorescence Microprobe Imaging with Undulator Radiation

Author:

Rivers Mark L.,Sutton Stephen R.,Gordon Barry M.

Abstract

AbstractSynchrotron x-ray fluorescence experiments were performed using a prototype undulator for the Advanced Photon Source installed on the CESR storage ring at Cornell University during a run in May, 1988. Fluorescence spectra were collected from a number of standard references and unknowns. Thick target minimum detectable limits (MDL) were about a factor of two higher than those obtained using white bending magnet radiation at the NSLS. The higher MDLs could be due to lower polarization and/or imperfect alignment of the Si(Li) detector. Thin target MDLs were about 10 times lower than the NSLS since the undulator produced a usable spot size which was also 10 times smaller. Several one dimensional multi-elemental scans and two dimensional images were made with 10 μm resolution and 30 ppm MDL. These experiments demonstrate that undulators on the proposed Advanced Photon Source will be ideal for a trace element x-ray fluorescence microprobe with excellent elemental sensitivity and spatial resolution.

Publisher

Springer Science and Business Media LLC

Subject

General Engineering

Reference3 articles.

1. X-Ray Fluorescence Imaging with Synchrotron Radiation

2. Trace element measurements using white synchrotron radiation

3. 1. Rivers M.L. , in Synchrotron X-Ray Sources and New Opportunities in the Earth Sciences: Workshop Report, edited by J. Smith and M. Manghnani, (Argonne National Laboratory Report ANL/APS-TM-3) pp. 5–22; S.R. Sutton et. al., in Synchrotron X-Ray Sources and New Opportunities in the Earth Sciences: Workshop Report, edited by J. Smith and M. Manghnani, (Argonne National Laboratory Report ANL/APS-TM-3), pp. 93–112.

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