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Yigal Horowitz
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19
Oster, Leonid
9
Biderman, S
5
Avila, Olga
5
Belaish, Y
5
Satinger, D
3
Rodríguez-Villafuerte, Mercedes
3
Brandan, María-Ester
3
Einav, Y
3
Nail, I
2
Olko, Pawel
2
Gamboa-deBuen, Isabel
2
Buenfil, Ana-Elena
2
Ruiz-Trejo, César
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All Publications
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2008: Horowitz Y S; Horowitz A; Oster L; Marino S; Datz H; Margaliot M
Investigation of the ionisation density dependence of the glow curve characteristics of LIF:MG,TI (TLD-100).
Radiation protection dosimetry 2008;131(4):406-13.
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2007: Horowitz Y S
Comments on 'Observation of enhanced efficiency in the excitation of ion-induced LiF:Mg,Ti thermoluminescent peaks' G. Massillon., I. Gamboa-deBuen and M.E. Brandan, J. Appl. Phys. 100, 103521-1 (2006).
Radiation protection dosimetry 2007;124(4):411-6; author reply 417-9.
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2007: Horowitz Y S; Oster L; Datz H
The thermoluminescence dose-response and other characteristics of the high-temperature TL in LiF:Mg,Ti (TLD-100).
Radiation protection dosimetry 2007;124(2):191-205.
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2007: Fuks E; Horowitz Y; Oster L; Belaish Y; Shahar B Ben
The effects of ionisation density on the glow curve structure of LiF:Mg,Ti (TLD-100): the behaviour of composite glow peak 5 in 'slow-cooled' material.
Radiation protection dosimetry 2007;126(1-4):194-7.
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2007: Horowitz Y S; Fuks E; Oster L; Podpalov L; Belaish Y; Shachar B Ben
Advanced multistage deconvolution applied to composite glow peak 5 in LiF:Mg,Ti (TLD-100).
Radiation protection dosimetry 2007;126(1-4):322-5.
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2006: Biderman S; Oster L; Horowitz Y S
Modelling the dose response of peaks 4, 5 and 5b, in TLD-100, as a function of recombination temperature.
Radiation protection dosimetry 2006;119(1-4):285-8.
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2006: Horowitz Y S; Satinger D; Avila O
Track structure approach to the calculation of peak 5a to peak 5 (TLD-100) relative intensities following heavy charged particle irradiation.
Radiation protection dosimetry 2006;119(1-4):45-8.
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2006: Biderman S; Oster L; Horowitz Y S
Theoretical and experimental investigation of the f(D)max-(S/S0)max anomaly in LiF:Mg,Ti.
Radiation protection dosimetry 2006;119(1-4):289-92.
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2006: Nail I; Horowitz Y S; Oster L; Brandan M E; Rodríguez-Villafuerte M; Buenfil A E; Ruiz-Trejo C; Gamboa-Debuen I; Avila O; Tovar V M; Olko P; Ipe N
Search for ionisation density effects in the radiation absorption stage in LiF:Mg,Ti.
Radiation protection dosimetry 2006;119(1-4):180-3.
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2006: Nail I; Oster L; Horowitz Y S; Biderman S; Belaish Y
Properties of the 4.45 eV optical absorption band in LiF:Mg,Ti.
Radiation protection dosimetry 2006;119(1-4):244-7.
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2006: Horowitz Y S; Fuks Y; Weiss D; Oster L; Podpalov L; Belaish Y
Optical excitation of LiF:Mg,Ti following alpha and beta irradiation.
Radiation protection dosimetry 2006;119(1-4):386-9.
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2006: Horowitz Y S; Belaish Y; Oster L
Theories of TL systems: failures, successes, conflicts, trends: insights into possible future materials and techniques.
Radiation protection dosimetry 2006;119(1-4):124-9.
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2004: Horowitz Yigal; Olko Pawel
The effects of ionisation density on the thermoluminescence response (efficiency) of LiF:Mg,Ti and LiF:Mg,Cu,P.
Radiation protection dosimetry 2004;109(4):331-48.
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2003: Oster L; Horowitz Y S; Biderman S; Haddad J
The concept of quasi-tissue-equivalent nanodosimeter based on the glow peak 5a/5 in LiF:Mg,Ti (TLD-100).
Australasian physical & engineering sciences in medicine / supported by the Australasian College of Physical Scientists in Medicine and the Australasian Association of Physical Sciences in Medicine 2003;26(4):173-8.
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2003: Horowitz Y S; Satinger D; Fuks E; Oster L; Podpalov L
On the use of LiF:Mg,Ti thermoluminescence dosemeters in space--a critical review.
Radiation protection dosimetry 2003;106(1):7-24.
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2002: Nail I; Horowitz Y S; Oster L; Biderman S
The unified interaction model applied to LiF:Mg,Ti (TLD-100): properties of the luminescent and competitive centres during sensitisation.
Radiation protection dosimetry 2002;102(4):295-304.
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2002: Biderman S; Horowitz Y; Oster L
Investigation of the emission spectra of LiF:Mg,Ti (TLD-100) during thermoluminescence.
Radiation protection dosimetry 2002;100(1-4):369-72.
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2002: Horowitz Y S; Einav Y; Biderman S; Oster L
Localised and delocalised optically induced conversion of composite glow peak 5 in LiF:Mg,Ti (TLD-100) to glow peak 4 as a function of postirradiation annealing temperature.
Radiation protection dosimetry 2002;100(1-4):135-8.
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2002: Weizman Y; Horowitz Y S; Oster L
Kinetic modelling of the optically stimulated conversion of peaks 5a and 5 to peak 4 in LiF:Mg,Ti (TLD-100).
Radiation protection dosimetry 2002;100(1-4):131-4.
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2002: Horowitz Y S; Oster L; Satinger D; Biderman S; Einav Y
The composite structure of peak 5 in the glow curve of LiF:Mg,Ti (TLD-100): confirmation of peak 5a arising from a locally trapped electron-hole configuration.
Radiation protection dosimetry 2002;100(1-4):123-6.
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2002: Issa N; Oster L; Horowitz Y S
Optical absorption and sensitisation dose response in LiF:Mg,Ti: application to the unified interaction model predictions of thermoluminescence dose response.
Radiation protection dosimetry 2002;100(1-4):107-10.
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2002: Horowitz Y S; Satinger D; Brandan M E; Avila O; Rodríguez-Villafuerte M
Supralinearity of peaks 5a, 5 and 5b in TLD-100 following 6.8 MeV and 2.6 MeV He ion irradiation: the extended track interaction model.
Radiation protection dosimetry 2002;100(1-4):95-8.
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2002: Horowitz Y S; Satinger D; Avila O
Theory of heavy charged particle thermoluminescence response: the extended track interaction model.
Radiation protection dosimetry 2002;100(1-4):91-4.
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2002: Avila O; Rodríguez-Villafuerte M; Gamboa-deBuen I; Avilés P; Estrada D; Buenfil A E; Ruiz-Trejo C; González P; Brandan M E; Horowitz Y S
On the correct measurement of relative heavy charged particles to gamma thermoluminescent efficiencies.
Radiation protection dosimetry 2002;100(1-4):87-90.
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2002: Biderman S; Horowitz Y S; Oster L; Einav Y; Dubi Y
Glow curve analysis of composite peak 5 in LiF:Mg,Ti (TLD-100) using optical bleaching, thermal annealing and computerised glow curve deconvolution.
Radiation protection dosimetry 2002;101(1-4):69-72.
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