Search Results - "Menge, Peter R."
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Li Co-Doped NaI:Tl (NaIL)-A Large Volume Neutron-Gamma Scintillator With Exceptional Pulse Shape Discrimination
Published in IEEE transactions on nuclear science (01-08-2017)“…We have demonstrated that Li can be substantially incorporated into the matrix of NaI under an optimized crystal growth process. The incorporation of Li…”
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Pulse shape discrimination of Cs2LiYCl6:Ce3+ scintillator from −30°C to 180°C
Published in Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment (01-06-2015)“…In this study, the scintillation performance of Ce doped Cs2LiYCl6 (CLYC) from −30°C to 180°C is presented. Pulse shape discrimination (PSD) of CLYC at various…”
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3
Performance of large lanthanum bromide scintillators
Published in Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment (21-08-2007)“…Cerium-doped lanthanum bromide, LaBr 3(Ce), scintillator possesses several outstanding properties that make it an attractive choice for security, medical, and…”
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Enhanced [Formula Omitted] Discrimination in Co-doped LaBr[Formula Omitted]:Ce
Published in IEEE transactions on nuclear science (01-02-2016)“…LaBr[Formula Omitted]:Ce crystal scintillator can be co-doped with various alkaline earth metals to improve light output and energy resolution of the basic…”
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5
Enhanced Discrimination in Co-doped LaBr 3 Ce
Published in IEEE transactions on nuclear science (01-02-2016)Get full text
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Enhanced \alpha \hbox \gamma Discrimination in Co-doped LaBr 3:Ce
Published in IEEE transactions on nuclear science (01-02-2016)“…LaBr 3 :Ce crystal scintillator can be co-doped with various alkaline earth metals to improve light output and energy resolution of the basic scintillator…”
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7
Enhanced α-γ discrimination in co-doped LaBr3:Ce
Published in 2014 IEEE Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC) (01-11-2014)“…LaBr 3 :Ce crystal scintillator can be co-doped with various alkaline earth metals to improve light output and energy resolution of the basic scintillator…”
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Conference Proceeding -
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Results of vacuum cleaning techniques on the performance of LiF field-threshold ion sources on extraction applied-B ion diodes at 1-10 TW
Published in IEEE transactions on plasma science (01-04-1997)“…Uncontrolled plasma formation on electrode surfaces limits performance in a wide variety of pulsed power devices such as electron and ion diodes, transmission…”
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Quantitative cleaning characterization of a lithium-fluoride ion diode
Published in IEEE transactions on plasma science (01-04-1997)“…An ion source cleaning testbed was created to test plasma-cleaning techniques, and to provide quantitative data on plasma-cleaning protocols prior to…”
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10
Eliminating Fractures in Large Lanthanum Bromide Crystal Packages
Published in IEEE transactions on nuclear science (01-04-2013)“…Cerium-activated lanthanum bromide scintillator crystals have low thermal diffusivity and low fracture strength under tension. This combination makes LaBr 3…”
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11
Behavior of Cs2LiYCl6:Ce scintillator up to 175°C
Published in 2011 IEEE Nuclear Science Symposium Conference Record (01-10-2011)“…Cs 2 LiYCl 6 :Ce (CLYC) is a promising crystal scintillator for gamma ray and neutron detection. Like many elpasolite crystal scintillators, it exhibits…”
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Conference Proceeding -
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Performance improvement of large Sr2+ and Ba2+ co-doped LaBr3:Ce3+ scintillation crystals
Published in 2012 IEEE Nuclear Science Symposium and Medical Imaging Conference Record (NSS/MIC) (01-10-2012)“…The performance improvement of large size (φ = 60 mm, ℓ = 80 mm) Sr 2+ and Br 2+ co-doped LaBr 3 :Ce 3+ scintillation crystals is reported. The scintillation…”
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Conference Proceeding -
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Scintillation properties and temperature responses of Cs2LiLaBr6:Ce3
Published in 2013 IEEE Nuclear Science Symposium and Medical Imaging Conference (2013 NSS/MIC) (01-10-2013)“…This report presents the scintillation properties and temperature dependent neutron and gamma responses of Cs 2 LiLaBr 6 elpasolite crystals with 0.5, 2, and…”
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Conference Proceeding -
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A cost effective means of extending the lifetime of plastic scintillators in portal monitors
Published in 2016 IEEE Nuclear Science Symposium, Medical Imaging Conference and Room-Temperature Semiconductor Detector Workshop (NSS/MIC/RTSD) (01-10-2016)“…Large plastic scintillators (5000 to >35000 cc) deployed as portal monitors and subjected to environmental extremes have been shown to suffer performance…”
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Conference Proceeding -
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Design and performance of a compact Cs2LiLaBr6(Ce) neutron/gamma detector using silicon photomultipliers
Published in 2015 IEEE Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC) (01-10-2015)“…Cs 2 LiLaBr 6 (Ce) (CLLB) crystal scintillator shows great potential as a radiation detection material with excellent energy resolution for gammas, sensitivity…”
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Conference Proceeding -
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A Monte-Carlo simulation study of detector array design for dedicated breast metabolic imaging systems
Published in Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment (15-12-2005)“…Development of dedicated metabolic breast imaging systems promise to improve the early detection of cancers in women with radio-dense and/or cystic breasts…”
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Efficient positioning of silicon photomultipliers on large scintillation crystals
Published in 2016 IEEE Nuclear Science Symposium, Medical Imaging Conference and Room-Temperature Semiconductor Detector Workshop (NSS/MIC/RTSD) (01-10-2016)“…Silicon photomultipliers (SiPMs) are attractive replacements for photomultiplier tubes (PMTs). However, many radiation detector applications require large…”
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Conference Proceeding -
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Effects of tapered tubes on long-pulse microwave emission from intense e-beam gyrotron-backward-wave-oscillators
Published in IEEE transactions on plasma science (01-10-1994)“…Experiments are reported on tapered-tube versus uniform-tube, gyrotron-backward-wave-oscillators (4.5-6 GHz) driven by an intense electron beam with…”
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