| Literature DB >> 25178010 |
Ryan D Muir1, Nicholas R Pogranichney1, J Lewis Muir2, Shane Z Sullivan1, Kevin P Battaile2, Anne M Mulichak2, Scott J Toth1, Lisa J Keefe2, Garth J Simpson1.
Abstract
Experiments and modeling are described to perform spectral fitting of multi-threshold counting measurements on a pixel-array detector. An analytical model was developed for describing the probability density function of detected voltage in X-ray photon-counting arrays, utilizing fractional photon counting to account for edge/corner effects from voltage plumes that spread across multiple pixels. Each pixel was mathematically calibrated by fitting the detected voltage distributions to the model at both 13.5 keV and 15.0 keV X-ray energies. The model and established pixel responses were then exploited to statistically recover images of X-ray intensity as a function of X-ray energy in a simulated multi-wavelength and multi-counting threshold experiment.Keywords: energy dispersive; fractional counting; multi-wavelength; spectroscopic imaging
Mesh:
Year: 2014 PMID: 25178010 PMCID: PMC4151684 DOI: 10.1107/S1600577514014167
Source DB: PubMed Journal: J Synchrotron Radiat ISSN: 0909-0495 Impact factor: 2.616