Garnet scintillator-based devices for gamma-ray spectroscopy
Owen B. Drury, Nerine J. Cherepy, T. A. Hurst, Steve A. Payne
Abstract
Owen B. Drury, Nerine J. Cherepy, T. A. Hurst, Steve A. Payne
Abstract
We are developing scintillator based gamma-ray spectrometers for homeland security and safeguards applications. Improving the energy resolution of such scintillator detectors enables the development of more accurate and effective instruments. We have characterized the response of several Ce doped garnet scintillators using radioactive sources. These garnet scintillators have multiple decay components. We have acquired pulse height spectra using conventional analog electronics as well as digital electronics with additional postprocessing. By making use of the long decay components, energy resolution can be improved. We are working to implement the inclusion of the long decay times into real-time processing algorithms.
OpenAlex reports 11 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
We are developing scintillator based gamma-ray spectrometers for homeland security and safeguards applications. Improving the energy resolution of such scintillator detectors enables the development of more accurate and effective instruments. We have characterized the response of several Ce doped garnet scintillators using radioactive sources. These garnet scintillators have multiple decay components. We have acquired pulse height spectra using conventional analog electronics as well as digital electronics with additional postprocessing. By making use of the long decay components, energy resolution can be improved. We are working to implement the inclusion of the long decay times into real-time processing algorithms.
Key concepts: Scintillator, Spectrometer, Gamma spectroscopy, Detector, Nuclear electronics, Electronics, Scintillation, Gamma ray