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Calibration and automatic counting in a neutrons dosimeter; Calibracion y conteo automatico de un dosimetro de neutrones

Abstract

Over the past decade, the majority of improvements in spectrometry have not come from improved detectors but from better computing facilities, in Folding codes, and nuclear data. However several types of passive neutron detectors have the potential for development into crude, low resolution spectrometers, to be worn by individuals, making them attractive to be subject of more time of investigation. This thesis contributes to the understanding of the properties of solid state nuclear tracks (SSNTD) in order to use them in neutron dosimetry and spectrometry. In the first chapter the basic principles on neutron interaction with matter and some relevant considerations about detection and dosimetry are presented. The third chapter deals with detection properties of solid state nuclear track detectors (SSNTD). Calibration methods are presented for three different applications, detection of heavy ions, radon and neutrons. In chapter 4, some equations are derived which predict the whole efficiency formation of thin plastic detectors as a function of range, angle, and type of inciding particle as well as residual thickness. Using experimental data on proton registration properties in thin plastic detectors and the former derived equations, mathematical expressions are developed to predict the sparking counting efficiency for recoll protons and trions  More>>
Publication Date:
Dec 31, 1991
Product Type:
Thesis/Dissertation
Report Number:
INIS-mf-13133
Reference Number:
SCA: 440102; PA: AIX-23:026280; SN: 92000685938
Resource Relation:
Other Information: TH: Thesis (M. Sc.).; PBD: 1991
Subject:
46 INSTRUMENTATION RELATED TO NUCLEAR SCIENCE AND TECHNOLOGY; DIELECTRIC TRACK DETECTORS; CALIBRATION; ETCHING; NEUTRON DETECTORS; NEUTRON DOSIMETRY; SPARK COUNTERS; 440102; RADIATION DOSEMETERS
OSTI ID:
10127984
Research Organizations:
Universidad Nacional Autonoma de Mexico, Mexico City (Mexico). Facultad de Ciencias
Country of Origin:
Mexico
Language:
Spanish
Other Identifying Numbers:
Other: ON: DE92620879; TRN: MX9200006026280
Availability:
OSTI; NTIS (US Sales Only); INIS
Submitting Site:
INIS
Size:
148 p.
Announcement Date:
Jul 04, 2005

Citation Formats

Tavera-Davila, M L. Calibration and automatic counting in a neutrons dosimeter; Calibracion y conteo automatico de un dosimetro de neutrones. Mexico: N. p., 1991. Web.
Tavera-Davila, M L. Calibration and automatic counting in a neutrons dosimeter; Calibracion y conteo automatico de un dosimetro de neutrones. Mexico.
Tavera-Davila, M L. 1991. "Calibration and automatic counting in a neutrons dosimeter; Calibracion y conteo automatico de un dosimetro de neutrones." Mexico.
@misc{etde_10127984,
title = {Calibration and automatic counting in a neutrons dosimeter; Calibracion y conteo automatico de un dosimetro de neutrones}
author = {Tavera-Davila, M L}
abstractNote = {Over the past decade, the majority of improvements in spectrometry have not come from improved detectors but from better computing facilities, in Folding codes, and nuclear data. However several types of passive neutron detectors have the potential for development into crude, low resolution spectrometers, to be worn by individuals, making them attractive to be subject of more time of investigation. This thesis contributes to the understanding of the properties of solid state nuclear tracks (SSNTD) in order to use them in neutron dosimetry and spectrometry. In the first chapter the basic principles on neutron interaction with matter and some relevant considerations about detection and dosimetry are presented. The third chapter deals with detection properties of solid state nuclear track detectors (SSNTD). Calibration methods are presented for three different applications, detection of heavy ions, radon and neutrons. In chapter 4, some equations are derived which predict the whole efficiency formation of thin plastic detectors as a function of range, angle, and type of inciding particle as well as residual thickness. Using experimental data on proton registration properties in thin plastic detectors and the former derived equations, mathematical expressions are developed to predict the sparking counting efficiency for recoll protons and trions produced by neutrons in SSNTD. Chapter five deals with the comparison between experimental results and theoretical results of chapter 4. In chapter 6 experimental optimum parameters for electrochemical etching of thin plastic detectors are presented. The electrochemical etching efficiency is compared with the spark countering efficiency obtained in chapter 5. In chapter 7, general comments on applications to neutron dosimetry are presented. (Author).}
place = {Mexico}
year = {1991}
month = {Dec}
}