Investigation of Cu2+ impurity effect on thermoluminescence

Thermoluminescence TL materials LiF(Mg,Cu2+) and LiF(Cu2+) were produced in powder. Their 3D emission spectra were investigated and compared to the commercially available LiF(Mg,Cu2+,P) and (LiF(Mg,Ti) TL materials. Emission spectrum of LiF(Mg,Cu2+) represents a peak maximum at 450 nm with a wide sh...

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Main Authors: F Torkzadeh, S S Amini, M Fugger
Format: Article
Language:English
Published: Isfahan University of Technology 2013-10-01
Series:Iranian Journal of Physics Research
Subjects:
Online Access:http://ijpr.iut.ac.ir/browse.php?a_code=A-10-1416-2&slc_lang=en&sid=1
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author F Torkzadeh
S S Amini
M Fugger
author_facet F Torkzadeh
S S Amini
M Fugger
author_sort F Torkzadeh
collection DOAJ
description Thermoluminescence TL materials LiF(Mg,Cu2+) and LiF(Cu2+) were produced in powder. Their 3D emission spectra were investigated and compared to the commercially available LiF(Mg,Cu2+,P) and (LiF(Mg,Ti) TL materials. Emission spectrum of LiF(Mg,Cu2+) represents a peak maximum at 450 nm with a wide shoulder ranging from 520 nm to infrared area. Emission peak of LiF(Cu2+) is situated at 380 nm and its tail also is stretched to infrared. The temperature rates of main peak in glow curves for LiF(Mg,Cu2+) and LiF(Cu2+) lie at 200 °C and 250°C, respectively. Based on the obtained results, Cu impurity in LiF(Mg,Cu,P) has a major role in removing emission frequencies which are higher than 500 nm and also UV sensitivity.
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spelling doaj.art-91cd3816417a4431b825a5a3b57b8f4c2022-12-22T00:10:36ZengIsfahan University of TechnologyIranian Journal of Physics Research1682-69572013-10-01133235240Investigation of Cu2+ impurity effect on thermoluminescence F Torkzadeh 0 S S Amini 1 M Fugger2 Thermoluminescence TL materials LiF(Mg,Cu2+) and LiF(Cu2+) were produced in powder. Their 3D emission spectra were investigated and compared to the commercially available LiF(Mg,Cu2+,P) and (LiF(Mg,Ti) TL materials. Emission spectrum of LiF(Mg,Cu2+) represents a peak maximum at 450 nm with a wide shoulder ranging from 520 nm to infrared area. Emission peak of LiF(Cu2+) is situated at 380 nm and its tail also is stretched to infrared. The temperature rates of main peak in glow curves for LiF(Mg,Cu2+) and LiF(Cu2+) lie at 200 °C and 250°C, respectively. Based on the obtained results, Cu impurity in LiF(Mg,Cu,P) has a major role in removing emission frequencies which are higher than 500 nm and also UV sensitivity.http://ijpr.iut.ac.ir/browse.php?a_code=A-10-1416-2&slc_lang=en&sid=1thermoluminescence emission wavelength trap center LiF(MgCu2+) LiF(Cu)
spellingShingle F Torkzadeh
S S Amini
M Fugger
Investigation of Cu2+ impurity effect on thermoluminescence
Iranian Journal of Physics Research
thermoluminescence
emission wavelength
trap center
LiF(Mg
Cu2+)
LiF(Cu)
title Investigation of Cu2+ impurity effect on thermoluminescence
title_full Investigation of Cu2+ impurity effect on thermoluminescence
title_fullStr Investigation of Cu2+ impurity effect on thermoluminescence
title_full_unstemmed Investigation of Cu2+ impurity effect on thermoluminescence
title_short Investigation of Cu2+ impurity effect on thermoluminescence
title_sort investigation of cu2 impurity effect on thermoluminescence
topic thermoluminescence
emission wavelength
trap center
LiF(Mg
Cu2+)
LiF(Cu)
url http://ijpr.iut.ac.ir/browse.php?a_code=A-10-1416-2&slc_lang=en&sid=1
work_keys_str_mv AT ftorkzadeh investigationofcu2impurityeffectonthermoluminescence
AT ssamini investigationofcu2impurityeffectonthermoluminescence
AT mfugger investigationofcu2impurityeffectonthermoluminescence