This dissertation details the analysis and characterization of coplanar grid CdZnTe detectors used for gamma-ray detection and spectroscopy. These detectors employ two anode signals to achieve spectra with good energy resolution at room temperature. Factors such as the coplanar grid design, electron trapping compensation, electronic noise, and the material properties have been found to affect the performance of these detectors. These effects have been studied in this work with simulations and experiments to result in detectors with improved spectroscopic performance. Using depth sensing and the relative gain method, a new coplanar grid design was experimentally shown to perform better than previous designs. 2.25 cm3 CdZnTe crystals utili...
We report γ-ray detection performance measurements and computer simulations of a sub-millimeter pitc...
Gamma-ray spectroscopy is undoubtedly the most effective tool for understanding the structure of the...
The wide band gap semiconductor material CdZnTe has long been of interest for gamma-ray spectroscopy...
This dissertation details the analysis and characterization of coplanar grid CdZnTe detectors used f...
The characteristics and performance for two of the latest coplanar grid CdZnTe detectors, which use ...
Since our last progress report, the project at The University of Michigan has continued to concentra...
To date, CdZnTe is the most promising material in the development of large volume room temperature g...
The coplanar-grid (CPG) and other electron only detection techniques have made possible the use of C...
The coplanar-grid technique provides substantial spectral performance improvement over that of conve...
Gamma-ray spectroscopy is a valuable tool of science and technology. Many applications for this tool...
The goal of this project was to utilize a novel device design to build a compact, high resolution, r...
Cadmium zinc telluride (CZT) has been shown to be suitable for use in high-resolution gamma-ray ener...
Novel electrode configurations, such as coplanar grids, have been successful in mitigating the effec...
The wide band gap semiconductor material CdZnTe has long been of interest for gamma-ray spectroscopy...
Abstract—The single polarity charge sensing method based on coplanar grid electrodes has demonstrate...
We report γ-ray detection performance measurements and computer simulations of a sub-millimeter pitc...
Gamma-ray spectroscopy is undoubtedly the most effective tool for understanding the structure of the...
The wide band gap semiconductor material CdZnTe has long been of interest for gamma-ray spectroscopy...
This dissertation details the analysis and characterization of coplanar grid CdZnTe detectors used f...
The characteristics and performance for two of the latest coplanar grid CdZnTe detectors, which use ...
Since our last progress report, the project at The University of Michigan has continued to concentra...
To date, CdZnTe is the most promising material in the development of large volume room temperature g...
The coplanar-grid (CPG) and other electron only detection techniques have made possible the use of C...
The coplanar-grid technique provides substantial spectral performance improvement over that of conve...
Gamma-ray spectroscopy is a valuable tool of science and technology. Many applications for this tool...
The goal of this project was to utilize a novel device design to build a compact, high resolution, r...
Cadmium zinc telluride (CZT) has been shown to be suitable for use in high-resolution gamma-ray ener...
Novel electrode configurations, such as coplanar grids, have been successful in mitigating the effec...
The wide band gap semiconductor material CdZnTe has long been of interest for gamma-ray spectroscopy...
Abstract—The single polarity charge sensing method based on coplanar grid electrodes has demonstrate...
We report γ-ray detection performance measurements and computer simulations of a sub-millimeter pitc...
Gamma-ray spectroscopy is undoubtedly the most effective tool for understanding the structure of the...
The wide band gap semiconductor material CdZnTe has long been of interest for gamma-ray spectroscopy...