Calibration of CR-39 Nuclear Track Detectors with Alpha-Particles and Protons for a Measurement of Neutron Interactions with 7Be and the Primordial 7Li Problem

Calibration of CR-39 Nuclear Track Detectors with Alpha-Particles and Protons for a Measurement of Neutron Interactions with 7Be and the Primordial 7Li Problem PDF Author: Emily E Kading
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Category : Electronic dissertations
Languages : en
Pages :

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Book Description
The Primordial Lithium problem of Big Bang Nucleosynthesis (BBN), a prediction of 7Li abundance which is considerably larger than observed, has important implications for the standard model of cosmology. Since 7Li is produced by the later decay of 7Be it is important to study the destruction of 7Be during the epoch of BBN, in order to examine possible reduction of the predicted abundance of 7Li, in particular the destruction of 7Be with neutrons. The high flux of 50 keV epithermal neutrons (1010 n/sec/cm2) produced by a Liquid Lithium (LiLiT) target at the Soreq Applied Research Accelerator Facility (SARAF) in Yavne, Israel offers opportunities for research at BBN energy. Due to the high intensity of the neutron flux at SARAF, background can be overwhelming for spectroscopic detectors. The plastic polymer CR-39 (poly allyl diglycol carbonate - PADC, C12H18O7) was chosen as a detector that can withstand the high neutron and associated gamma-ray flux. CR-39 Nuclear Track Detectors (NTD) have been calibrated for detection of alpha-particles and protons in a high neutron flux environment. These detectors can be used to detect damage caused by ionizing radiation on the plastic through a process of chemical etching. Charged particles leave behind a trademark path of chemical bonds broken by incoming ionized radiation. After chemical etching, the broken bonds are visible under a microscope in the form of circular pits. A segmentation algorithm was developed using ImageJ/FIJI to analyze the pits and calibrate the detectors for use in the 7Be and neutron experiment at SARAF.

Calibration of CR-39 Nuclear Track Detectors with Alpha-Particles and Protons for a Measurement of Neutron Interactions with 7Be and the Primordial 7Li Problem

Calibration of CR-39 Nuclear Track Detectors with Alpha-Particles and Protons for a Measurement of Neutron Interactions with 7Be and the Primordial 7Li Problem PDF Author: Emily E Kading
Publisher:
ISBN:
Category : Electronic dissertations
Languages : en
Pages :

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Book Description
The Primordial Lithium problem of Big Bang Nucleosynthesis (BBN), a prediction of 7Li abundance which is considerably larger than observed, has important implications for the standard model of cosmology. Since 7Li is produced by the later decay of 7Be it is important to study the destruction of 7Be during the epoch of BBN, in order to examine possible reduction of the predicted abundance of 7Li, in particular the destruction of 7Be with neutrons. The high flux of 50 keV epithermal neutrons (1010 n/sec/cm2) produced by a Liquid Lithium (LiLiT) target at the Soreq Applied Research Accelerator Facility (SARAF) in Yavne, Israel offers opportunities for research at BBN energy. Due to the high intensity of the neutron flux at SARAF, background can be overwhelming for spectroscopic detectors. The plastic polymer CR-39 (poly allyl diglycol carbonate - PADC, C12H18O7) was chosen as a detector that can withstand the high neutron and associated gamma-ray flux. CR-39 Nuclear Track Detectors (NTD) have been calibrated for detection of alpha-particles and protons in a high neutron flux environment. These detectors can be used to detect damage caused by ionizing radiation on the plastic through a process of chemical etching. Charged particles leave behind a trademark path of chemical bonds broken by incoming ionized radiation. After chemical etching, the broken bonds are visible under a microscope in the form of circular pits. A segmentation algorithm was developed using ImageJ/FIJI to analyze the pits and calibrate the detectors for use in the 7Be and neutron experiment at SARAF.

Measurement of Thermonuclear Alpha-particles Using the Plastic Track Detector CR-39, and Its Response to Protons and Alpha-particles

Measurement of Thermonuclear Alpha-particles Using the Plastic Track Detector CR-39, and Its Response to Protons and Alpha-particles PDF Author:
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Category :
Languages : en
Pages :

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The Calibration and Implementation of CR-39 Nuclear Track Detector Material as a Fast Neutron Microdosimeter

The Calibration and Implementation of CR-39 Nuclear Track Detector Material as a Fast Neutron Microdosimeter PDF Author: Patrick Morgan Stafford
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Category :
Languages : en
Pages : 464

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A Method for in Situ Absolute DD Yield Calibration of Neutron Time-of-flight Detectors on OMEGA Using CR-39-based Proton Detectors

A Method for in Situ Absolute DD Yield Calibration of Neutron Time-of-flight Detectors on OMEGA Using CR-39-based Proton Detectors PDF Author:
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Category :
Languages : en
Pages :

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Neutron time of flight (nTOF) detectors are used routinely to measure the absolute DD neutron yield at OMEGA. To check the DD yield calibration of these detectors, originally calibrated using indium activation systems, which in turn were cross-calibrated to NOVA nTOF detectors in the early 1990s, a direct in situ calibration method using CR-39 range filter proton detectors has been successfully developed. By measuring DD neutron and proton yields from a series of exploding pusher implosions at OMEGA, a yield calibration coefficient of 1.09 ± 0.02 (relative to the previous coefficient) was determined for the 3m nTOF detector. In addition, comparison of these and other shots indicates that significant reduction in charged particle flux anisotropies is achieved when bang time occurs significantly (on the order of 500 ps) after the trailing edge of the laser pulse. This is an important observation as the main source of the yield calibration error is due to particle anisotropies caused by field effects. The results indicate that the CR-39-nTOF in situ calibration method can serve as a valuable technique for calibrating and reducing the uncertainty in the DD absolute yield calibration of nTOF detector systems on OMEGA, the National Ignition Facility, and laser megajoule.

The Problem of Measuring the Absolute Yield of 14-mev Neutrons by Means of an Alpha Counter

The Problem of Measuring the Absolute Yield of 14-mev Neutrons by Means of an Alpha Counter PDF Author:
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ISBN:
Category : Alpha rays
Languages : en
Pages : 26

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Alpha-particle Calibrations

Alpha-particle Calibrations PDF Author: J. M. R. Hutchinson
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ISBN:
Category : Alpha rays
Languages : en
Pages : 38

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Calibration Handbook

Calibration Handbook PDF Author: G. Lalos
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ISBN:
Category : Calibration
Languages : en
Pages : 508

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Summary of Neutron Measurement Methods

Summary of Neutron Measurement Methods PDF Author: Herman Lunden Miller
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ISBN:
Category : Gamma rays
Languages : en
Pages : 28

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Calibration of CR-39 for Detecting Fusion Neutrons

Calibration of CR-39 for Detecting Fusion Neutrons PDF Author: Michael T. Collopy
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Category : Neutrons
Languages : en
Pages : 174

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Experimental Determination of Alpha-particle Track Depths in CR-39 Detectors

Experimental Determination of Alpha-particle Track Depths in CR-39 Detectors PDF Author: Man Fong Ng
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ISBN:
Category : Alpha rays
Languages : en
Pages : 172

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