Recent Developments in Neutron Detection and Multiplicity Counting with Liquid Scintillator

Recent Developments in Neutron Detection and Multiplicity Counting with Liquid Scintillator
Title Recent Developments in Neutron Detection and Multiplicity Counting with Liquid Scintillator PDF eBook
Author
Publisher
Pages 11
Release 2010
Genre
ISBN

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For many years at LLNL we have been developing time-correlated neutron detection techniques and algorithms for many applications including Arms Control, Threat Detection and Nuclear Material Assaying. Many of our techniques have been developed specifically for relatively low efficiency (a few %) inherent in the man-portable systems. Historically we used thermal neutron detectors (mainly 3He) taking advantage of the high thermal neutron interaction cross-sections but more recently we have been investigating fast neutron detection with liquid scintillators and inorganic crystals. We have discovered considerable detection advantages with fast neutron detection as the inherent nano-second production time-scales of fission and neutron induced fission are preserved instead of being lost in neutron thermalization required for thermal neutron detectors. We are now applying fast neutron technology (new fast and portable digital electronics as well as new faster and less hazardous scintillator formulations) to the safeguards regime and faster detector response times and neutron momentum sensitivity show promise in measuring, differentiating and assaying samples that have very high count rates as well as mixed fission sources (e.g. Cm and Pu). We report on measured results with our existing liquid scintillator array and progress on design of nuclear material assaying system that incorporates fast neutron detection.

Recent Developments In Fast Neutron Detection And Multiplicity Counting With Verification With Liquid Scintillator

Recent Developments In Fast Neutron Detection And Multiplicity Counting With Verification With Liquid Scintillator
Title Recent Developments In Fast Neutron Detection And Multiplicity Counting With Verification With Liquid Scintillator PDF eBook
Author
Publisher
Pages 13
Release 2011
Genre
ISBN

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For many years at LLNL, we have been developing time-correlated neutron detection techniques and algorithms for applications such as Arms Control, Threat Detection and Nuclear Material Assay. Many of our techniques have been developed specifically for the relatively low efficiency (a few percent) attainable by detector systems limited to man-portability. Historically, we used thermal neutron detectors (mainly 3He), taking advantage of the high thermal neutron interaction cross-sections. More recently, we have been investigating the use of fast neutron detection with liquid scintillators, inorganic crystals, and in the near future, pulse-shape discriminating plastics which respond over 1000 times faster (nanoseconds versus tens of microseconds) than thermal neutron detectors. Fast neutron detection offers considerable advantages, since the inherent nanosecond production time-scales of spontaneous fission and neutron-induced fission are preserved and measured instead of being lost by thermalization required for thermal neutron detectors. We are now applying fast neutron technology to the safeguards regime in the form of fast portable digital electronics as well as faster and less hazardous scintillator formulations. Faster detector response times and sensitivity to neutron momentum show promise for measuring, differentiating, and assaying samples that have modest to very high count rates, as well as mixed fission sources like Cm and Pu. We report on measured results with our existing liquid scintillator array, and progress on the design of a nuclear material assay system that incorporates fast neutron detection, including the surprising result that fast liquid scintillator detectors become competitive and even surpass the precision of 3He-based counters measuring correlated pairs in modest (kg) samples of plutonium.

Some Neutron Detection Investigations

Some Neutron Detection Investigations
Title Some Neutron Detection Investigations PDF eBook
Author Carl Oliver Muehlhause
Publisher
Pages 12
Release 1953
Genre Neutron counters
ISBN

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Neutron Detection and Multiplicity Counting Using a Boron-loaded Plastic Scintillator/bismuth Germanate Phoswich Detector Array

Neutron Detection and Multiplicity Counting Using a Boron-loaded Plastic Scintillator/bismuth Germanate Phoswich Detector Array
Title Neutron Detection and Multiplicity Counting Using a Boron-loaded Plastic Scintillator/bismuth Germanate Phoswich Detector Array PDF eBook
Author Michael Conrad Miller
Publisher
Pages 364
Release 1997
Genre Neutron counters
ISBN

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Neutron and Gamma Pulse Shape Discrimination in a Liquid Scintillator Counter for Neutron Multiplicity Measurements of Enriched Uranium

Neutron and Gamma Pulse Shape Discrimination in a Liquid Scintillator Counter for Neutron Multiplicity Measurements of Enriched Uranium
Title Neutron and Gamma Pulse Shape Discrimination in a Liquid Scintillator Counter for Neutron Multiplicity Measurements of Enriched Uranium PDF eBook
Author
Publisher
Pages 8
Release 2004
Genre
ISBN

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A new neutron multiplicity counter is being developed which utilizes the fast response of liquid scintillator (NE-213) detectors. Current uranium coincidence counting methods rely on the assay samples to conform to the calibration standards with respect to the sample uniformity, geometry, material type, etc. There exists a wide range of material throughout the DOE complex where these attributes are non-standard or unknown. A neutron counter with short die-away time makes possible the measurement of higher order coincidences. This information can be used to more accurately assay many of the problem items in the inventory. In addition, such a counter would allow for rapid inventory measurements of all forms of uranium. Liquid scintillator detectors also allow for energy discrimination between interrogation source neutrons and fission neutrons, allowing for even greater assay sensitivity. Liquid scintillator detectors are sensitive to? and neutron radiation. Differences in the timing of scintillation light produced in?-ray and neutron interactions allows for separation of these events using pulse shape discrimination (PSD). PMT pulses resulting from neutron and? interactions in the Liquid scintillator are read in using a fast waveform digitizer with a 1 GS/s sampling rate. The pulse shapes are then compared to? and neutron pulse templates and a?2 comparison determines the species. Integrated rise time can also be used to discriminate between they and neutron pulses. The results of these studies are presented.

Summary of Neutron Measurement Methods

Summary of Neutron Measurement Methods
Title Summary of Neutron Measurement Methods PDF eBook
Author Herman Lunden Miller
Publisher
Pages 28
Release 1962
Genre Gamma rays
ISBN

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Radiation Sensing

Radiation Sensing
Title Radiation Sensing PDF eBook
Author Kelum A. A. Gamage
Publisher MDPI
Pages 157
Release 2021-09-06
Genre Technology & Engineering
ISBN 3036514406

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Radiation detection is important in many fields, and it poses significant challenges for instrument designers. Radiation detection instruments, particularly for nuclear decommissioning and security applications, are required to operate in unknown environments and should detect and characterise radiation fields in real time. This book covers both theory and practice, and it solicits recent advances in radiation detection, with a particular focus on radiation detection instrument design, real-time data processing, radiation simulation and experimental work, robot design, control systems, task planning and radiation shielding.