Papers in Journals

#Paper TitleAuthorsJournalPublished At
 
1Recovery of thermoluminescence sensitivity in CaF2:Mn (TLD-400) dosimeter under heating processAkbari, S., Harooni, S. and Zahedifar, M.Iran. J. Radiat. safety and Meas.2019
2Synthesis of MgSO4 nanoparticle doped with Cu by hydrothermal method and investigation of its thermoluminescence properties in gamma irradiationAlmasifard, F., Sadeghi, E., Zahedifar, M., and Harooni, S.Iran. J. Radiat. safety and Meas.2017
3Investigation of sensitivity loss and recovery method of CaF2:Mn (TLD-400) thermoluminescent dosimeter irradiated to high gamma doseHarooni, S. and Akbari, S.Iran. J. Radiat. safety and Meas.,2022
4Determination of thermal quenching parameters of TLD-100 dosimeterHarooni, S., Zahedifar, M., and Ahmadian Z.Iran. J. Radiat. safety and Meas.2017
5A new thermoluminescence mixed order model considering thermal ‎quenching effectHarooni, S., Zahedifar, M., Kermani, S. and Sadeghi, E.Iran. J. Phys. Res.2021
6The study on the kinetic parameters of deep traps of α-Al2O3:C (TLD-500) dosimeter by comparing experimental photo-transferred thermoluminescence response with the theoretical modelHarooni, S., Zahedifar, M., Ramazani-Moghaddam-Arani, A., Sadeghi, E., and Mehrabi, M.J. Nucl. Sci. Technol.2019
7A new thermoluminescence general order glow curve fit function considering thermal quenching effectHarooni, S., Zahedifar, M., Sadeghi, E., and Ahmadian, Z.,Radiat. Prot. Dosim.2019
8Thermoluminescence and photoluminescece properties of NaCl:Mn, NaCL:Cu nano-particles produced using co-precipitation and sono-chemistry methodsMehrabi, M., Zahedifar, M., Saeidi-Sogh, Z., Ramazani-Moghaddam-Arani, A., Sadeghi, E. and Harooni, SNucl. Inst. And Meth. A2017
9Determination of thermal quenching parameters in CaF2: Mn(TLD-400) thermoluminescent dosimeterTaheri-Hasanabad, S., Harooni, S., Zahedifar, M. and Hajiloo, N.J. Nucl. Sci. Technol.2020
10Synthesis, structural characteristics and thermoluminescence features of KCl: Mn and KCl: Ce phosphorsTalebi, M., Sadeghi, E., Zahedifar, M. and Harooni, S.,Nucl. Inst. And Meth. B2022
11A new interactive thermoluminescence mixed-order glow curve deconvolution functionZahedifar, M. and Harooni, SRadiat. Eff. Def. Solids2013
12An improved mixed order model for describing thermoluminescence glow curvesZahedifar, M. and Harooni, SIJST2015
13Thermoluminescence dosimetry properties and kinetic analysis of MgSO4:Dy microcrystalline prepared by solid state methodZahedifar, M., Almasifard, F., Sadeghi, E., Harooni, S. and Kashefi biroon , MRadiat. Meas2017
14A new thermoluminescence mixed order model for continuous and uniform distribution of trapping centersZahedifar, M., and Harooni, S.Iran. J. Phys. Res.2011
15Thermoluminescence kinetic analysis of quartz using an improved general order model for exponential distribution of activation energiesZahedifar, M., Harooni, S. and Sadeghi, ENucl. Inst. And Meth. A2011
16Synthesis of CaSO4: Mn nanosheets with high thermoluminescence sensitivityZahedifar, M., Mehrabi, M. and Harooni, S.Appl. Radiat. Isotopes2011
17Thermoluminescece properties of BeO:Mg nanoparticles produced by sol-gel methodZahedifar, M., Mehrabi, M., Modarres, M. and Harooni, SJNS2012
18Thermoluminescence kinetic analysis of basaltic rocks using a generalized model for exponential distribution of activation energiesZahedifar, M., Rezaeian, P. and Harooni, SNucl. Inst. And Meth. B2007
19Thermoluminescence characteristics of the novel CaF2:Dy nanoparticles prepared by using the hydrothermal methodZahedifar, M., Sadeghi, E. and Harooni, SNucl. Inst. And Meth. B2012
20Thermoluminescence dosimetry features of Dy and Cu doped SrF2 nanoparticles under gamma irradiationZahedifar, M., Sadeghi, E., Kashefi biroon , M., Harooni, S. and Almasifard, FAppl. Radiat. Isot2015
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