Title :
A 48×48 CdZnTe array with multiplexer readout
Author :
Marks, DG ; Barber, H. Bradford ; Barrett, HH ; Dereniak, E.L. ; Eskin, JD ; Matherson, KJ ; Woolfenden, JM ; Young, ET ; Augustine, FL ; Hamilton, WJ ; Venzon, JE ; Apotovsky, BA ; Doty, FP
Author_Institution :
Optical Sci. Center, Arizona Univ., Tucson, AZ, USA
Abstract :
We report results of gamma-ray imaging and energy-resolution tests of a 48×48 CdZnTe array. Our detectors have 125 μm square pixel electrodes produced by photolithography and are indium-bump-bonded to multiplexer readout circuit. Using a collimated beam of 140 keV gamma rays of 120 μm diameter centered on one pixel, we found that the majority of events produced significant charge deposition in nearby pixels. Charge and energy are transported out of the pixel by charge diffusion, photoelectron range, Compton scattering, and escape of K X-rays. These effects also distort single-pixel spectra, although photopeaks are still discernible at 140 keV. When signals from neighboring pixels are summed together to correct for this charge spreading, an energy resolution of 10 keV is obtained at 140 keV. Corrections will be simpler and energy resolution should be better for the 380 μm pixels of the 64×64 CdZnTe arrays we are constructing for an ultra-high-resolution brain imager
Keywords :
biomedical imaging; computerised tomography; semiconductor counters; tomography; 120 mum; 140 keV; CdZnTe; CdZnTe array; Compton scattering; In; In-bump-bonded; SPECT; brain imager; charge diffusion; energy resolution; energy-resolution; gamma-ray imaging; multiplexer readout; multiplexer readout circuit; photoelectron range; pixel electrodes; Circuit testing; Collimators; Detectors; Electrodes; Energy resolution; Gamma rays; Lithography; Multiplexing; Nuclear imaging; X-ray scattering;
Conference_Titel :
Nuclear Science Symposium and Medical Imaging Conference Record, 1995., 1995 IEEE
Conference_Location :
San Francisco, CA
Print_ISBN :
0-7803-3180-X
DOI :
10.1109/NSSMIC.1995.510377