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Revision 263 as of 2022-01-19 14:24:49
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Editor: LukaSnoj
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 *Član komisije za jedrsko in sevalno problematiko na IJS  *Član komisije za jedrsko in sevalno problematiko na IJS (v letu 2022 predsednik)
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 *Član varnostnega odbora NEK, Krško Safety Commitee (2022+)
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 * M. Joyce, L.Snoj, et.al., '''[[https://doi.org/10.1016/j.nima.2021.165946 | Wireless information transfer with fast neutrons]]''', ''Nuclear Instruments and Methods in Physics Research Section A: '', Volume 1021, 1 January 2022, 165946  * M. Joyce, L.Snoj, et al., '''[[https://doi.org/10.1016/j.nima.2021.165946 | Wireless information transfer with fast neutrons]]''', ''Nuclear Instruments and Methods in Physics Research Section A: '', Volume 1021, 1 January 2022, 165946
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 * Ž. Štancar, L. Snoj, et.al., '''[[https://iopscience.iop.org/article/10.1088/1741-4326/ac3021| Experimental validation of an integrated modelling approach to neutron emission studies at JET]]''', '' Nuclear Fusion'', vol 61, number 12, 2021
 * A.G. Plant, L. Snoj, et.al., '''[[https://www.nature.com/articles/s42004-021-00572-5 | Nuclear-driven production of renewable fuel additives from waste organics]]''', '' Nature Communications Chemistry'', 4, 132, 2021
 * T. Goričanec, L. Snoj, et.al., '''[[https://doi.org/10.1016/j.net.2021.05.022 | Applicability of the Krško nuclear power plant core Monte Carlo model for the determination of the neutron source term]]''', ''Nuclear Engineering and Technology'', Vol. 53, Iss. 11, 2021
 * Ž. Štancar, L. Snoj, et al., '''[[https://iopscience.iop.org/article/10.1088/1741-4326/ac3021| Experimental validation of an integrated modelling approach to neutron emission studies at JET]]''', '' Nuclear Fusion'', vol 61, number 12, 2021
 * A.G. Plant, L. Snoj, et al., '''[[https://www.nature.com/articles/s42004-021-00572-5 | Nuclear-driven production of renewable fuel additives from waste organics]]''', '' Nature Communications Chemistry'', 4, 132, 2021
 * T. Goričanec, L. Snoj, et al., '''[[https://doi.org/10.1016/j.net.2021.05.022 | Applicability of the Krško nuclear power plant core Monte Carlo model for the determination of the neutron source term]]''', ''Nuclear Engineering and Technology'', Vol. 53, Iss. 11, 2021
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 * A. West, L. Snoj, et.al., '''[[https://dx.doi.org/10.1038/s41598-021-93474-4|Use of Gaussian process regression for radiation mapping of a nuclear reactor with a mobile robot]] ''', ''Nature Scientific reports'', 11, 13975
 * I. Lengar, L. Snoj, et.al. '''[[ https://dx.doi.org/10.1016/j.fusengdes.2021.112569|Shutdown dose rate calculations with modified DEMO single sector model]]''', ''Fusion Engineering and Design''. vol. 171, art. 112569,
 * D. Kotnik, L. Snoj, et.al. '''[[https://dx.doi.org/10.1016/j.fusengdes.2021.112348|Assessment of sky-shine in DEMO during breeding blanket maintenance]]''', ''Fusion Engineering and Design'', vol. 167
 * V. Radulović, L.Snoj, et. al. '''[[https://doi.org/10.1016/j.fusengdes.2021.112410|Preparation of a water activation experiment at JET to support ITER]]''', ''Fusion Engineering and Design'', vol. 169, 112410,
 * A. Jazbec, L.Snoj, et. al. , '''[[https://dx.doi.org/10.1016/j.apradiso.2020.109510|Dose rate calculations at beam tube no. 5 of the JSI TRIGA mark II research reactor using Monte Carlo method]]'''. ''Applied Radiation and Isotopes'', 2021, vol.168, art.109510,
 * A. Žohar, L.Snoj, et. al. , '''[[ https://dx.doi.org/10.1016/j.fusengdes.2020.112158|Modelling of plasma gamma ray sources in large tokamaks]]'''. ''Fusion engineering and design'', 2021, vol. 163, art. 112158,
 * L. Pirker, L.Snoj, et. al., '''[[ https://doi.org/10.1016/j.memsci.2020.118756|Sterilization of polypropylene membranes of facepiece respirators by ionizing radiation]]'''. ''Journal of membrane science''. 2021, vol. 619, art. 118756,
 * I. Tsitsimpelis, L.Snoj, et. al., '''[[https://doi.org/10.1109/JSEN.2020.3035147|Simultaneous, robot-compatible gamma -ray spectroscopy and imaging of an operating nuclear reactor]]''', ''IEEE sensors journal'', 2021, vol. 21, no. 4,
 * R. Bernat, L.Snoj, et. al., '''[[https://doi.org/10.3390/ma14175105 | 4H-SiC Schottky Barrier Diodes for Efficient Thermal Neutron Detection]]''', ''Materials'', 14(17), 5105, 2021
 * A. West, L. Snoj, et al., '''[[https://dx.doi.org/10.1038/s41598-021-93474-4|Use of Gaussian process regression for radiation mapping of a nuclear reactor with a mobile robot]] ''', ''Nature Scientific reports'', 11, 13975
 * I. Lengar, L. Snoj, et al. '''[[ https://dx.doi.org/10.1016/j.fusengdes.2021.112569|Shutdown dose rate calculations with modified DEMO single sector model]]''', ''Fusion Engineering and Design''. vol. 171, art. 112569,
 * D. Kotnik, L. Snoj, et al. '''[[https://dx.doi.org/10.1016/j.fusengdes.2021.112348|Assessment of sky-shine in DEMO during breeding blanket maintenance]]''', ''Fusion Engineering and Design'', vol. 167
 * V. Radulović, L.Snoj, et al. '''[[https://doi.org/10.1016/j.fusengdes.2021.112410|Preparation of a water activation experiment at JET to support ITER]]''', ''Fusion Engineering and Design'', vol. 169, 112410,
 * A. Jazbec, L.Snoj, et al., '''[[https://dx.doi.org/10.1016/j.apradiso.2020.109510|Dose rate calculations at beam tube no. 5 of the JSI TRIGA mark II research reactor using Monte Carlo method]]'''. ''Applied Radiation and Isotopes'', 2021, vol.168, art.109510,
 * A. Žohar, L.Snoj, et al., '''[[ https://dx.doi.org/10.1016/j.fusengdes.2020.112158|Modelling of plasma gamma ray sources in large tokamaks]]'''. ''Fusion engineering and design'', 2021, vol. 163, art. 112158,
 * L. Pirker, L.Snoj, et al., '''[[ https://doi.org/10.1016/j.memsci.2020.118756|Sterilization of polypropylene membranes of facepiece respirators by ionizing radiation]]'''. ''Journal of membrane science''. 2021, vol. 619, art. 118756,
 * I. Tsitsimpelis, L.Snoj, et al., '''[[https://doi.org/10.1109/JSEN.2020.3035147|Simultaneous, robot-compatible gamma -ray spectroscopy and imaging of an operating nuclear reactor]]''', ''IEEE sensors journal'', 2021, vol. 21, no. 4,
 * R. Bernat, L.Snoj, et al., '''[[https://doi.org/10.3390/ma14175105 | 4H-SiC Schottky Barrier Diodes for Efficient Thermal Neutron Detection]]''', ''Materials'', 14(17), 5105, 2021
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 * A. Pungerčič, L.Snoj, et. al. '''[[https://dx.doi.org/10.1016/j.pnucene.2020.103536|Computational burnup analysis of the TRIGA Mark II research reactor fuel]]'''. ''Progress in Nuclear Energy'', 2020, vol. 130, art. 103536, .
 * V. Radulović, L.Snoj, et. al., '''[[https://doi.org/10.1016/j.nds.2020.07.003|Characterization of the neutron spectra in three irradiation channels of the JSI TRIGA reactor using the GRUPINT spectrum adjustment code]]'''. ''Nuclear data sheets'', 2020, vol. 167
 * J. Malec, D. Toškan, L. Snoj, '''[[https://doi.org/10.1016/j.anucene.2020.107630|PC-based JSI research reactor simulator]]''', ''Annals of Nuclear Energy'', 2020, vol. 146, art. 107630,
 * A. Žohar, I. Lengar, L. Snoj, '''[[https://doi.org/10.1016/j.fusengdes.2020.111828|Analysis of water activation in fusion and fission nuclear facilities]] '''. ''Fusion engineering and design'', 2020, vol. 160, art. 111828, 17 str.,
 * A. Žohar, L.Snoj, et. al., '''[[https://doi.org/10.1016/j.fusengdes.2020.111946|Analysis of irradiation experiments with activated water radiation source at the JSI TRIGA Research Reactor]]'''. Fusion engineering and design. 2020, vol. 161, art. 111946
 * D. Kotnik, L.Snoj, et. al., '''[[https://doi.org//10.1016/j.anucene.2020.107585|Use of ADVANTG to analyse skyshine [gamma]-dose rates around a silo type LILW repository]]'''. Annals of Nuclear Energy, 2020, vol. 145 
 * V. Radulović, L.Snoj, et. al., '''[[https://doi.org/10.1016/j.nima.2020.164122|Silicon carbide neutron detector testing at the JSI TRIGA reactor for enhanced border and port security]]'''. Nuclear instruments and methods in physics research. Section A, 2020, vol. 972, no. 164122,
 * A. Gruel , L.Snoj, et. al., '''[[https://doi.org/10.1109/TNS.2020.2974968|Gamma-heating and gamma flux measurements in the JSI TRIGA reactor, results and prospects]]'''. ''IEEE transactions on nuclear science'' 2020
 * K. Ambrožič, L. Snoj, '''[[https://dx.doi.org/10.1016/j.pnucene.2020.103498|JSIR2S code for delayed radiation simulations: Validation against measurements at the JSI TRIGA reactor]] '''. ''Progress in Nuclear Energy''. vol. 129, art. 103498
 * A. Jazbec, L.Snoj, et. al.,'''[[https://dx.doi.org/10.1016/j.apradiso.2020.109510|Dose rate calculations at beam tube no. 5 of the JSI TRIGA mark II research reactor using Monte Carlo method]]''', ''Applied Radiation and Isotopes'', 2020, vol.168, 109510
 * A. Pungerčič, L.Snoj, et al. '''[[https://dx.doi.org/10.1016/j.pnucene.2020.103536|Computational burnup analysis of the TRIGA Mark II research reactor fuel]]'''. ''Progress in Nuclear Energy'', 2020, vol. 130, art. 103536, .
 * V. Radulović, L.Snoj, et al., '''[[https://doi.org/10.1016/j.nds.2020.07.003|Characterization of the neutron spectra in three irradiation channels of the JSI TRIGA reactor using the GRUPINT spectrum adjustment code]]'''. ''Nuclear data sheets'', 2020, vol. 167
 * J. Malec, D. Toškan & L. Snoj, '''[[https://doi.org/10.1016/j.anucene.2020.107630|PC-based JSI research reactor simulator]]''', ''Annals of Nuclear Energy'', 2020, vol. 146, art. 107630,
 * A. Žohar, I. Lengar & L. Snoj, '''[[https://doi.org/10.1016/j.fusengdes.2020.111828|Analysis of water activation in fusion and fission nuclear facilities]] '''. ''Fusion engineering and design'', 2020, vol. 160, art. 111828, 17 str.,
 * A. Žohar, L.Snoj, et al., '''[[https://doi.org/10.1016/j.fusengdes.2020.111946|Analysis of irradiation experiments with activated water radiation source at the JSI TRIGA Research Reactor]]''', ''Fusion engineering and design'', 2020, vol. 161, art. 111946
 * D. Kotnik, L.Snoj, et al., '''[[https://doi.org//10.1016/j.anucene.2020.107585|Use of ADVANTG to analyse skyshine [gamma]-dose rates around a silo type LILW repository]]'''. ''Annals of Nuclear Energy'', Volume 145, 15 September 2020, 107585
 * V. Radulović, L.Snoj, et al., '''[[https://doi.org/10.1016/j.nima.2020.164122|Silicon carbide neutron detector testing at the JSI TRIGA reactor for enhanced border and port security]]'''. ''Nuclear instruments and methods in physics research. Section A'', 2020, vol. 972, no. 164122,
 * A. Gruel , L.Snoj, et al., '''[[https://doi.org/10.1109/TNS.2020.2974968|Gamma-heating and gamma flux measurements in the JSI TRIGA reactor, results and prospects]]'''. ''IEEE transactions on nuclear science'', Volume: 67, Issue: 4, April 2020
 * K. Ambrožič & L. Snoj '''[[https://dx.doi.org/10.1016/j.pnucene.2020.103498|JSIR2S code for delayed radiation simulations: Validation against measurements at the JSI TRIGA reactor]] '''. ''Progress in Nuclear Energy''. vol. 129, art. 103498
 * A. Jazbec, L.Snoj, et al.,'''[[https://dx.doi.org/10.1016/j.apradiso.2020.109510|Dose rate calculations at beam tube no. 5 of the JSI TRIGA mark II research reactor using Monte Carlo method]]''', ''Applied Radiation and Isotopes'', 2020, vol.168, 109510
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 * D. Kotnik, L.Snoj, et. al., '''[[https://doi.org/10.1016/j.anucene.2018.11.025|Validation and evaluation of the ADVANTG code on the ICSBEP skyshine benchmark experiment]] '''. Annals of Nuclear Energy, 2019, vol. 125, pp. 249-260,
 * Review paper: A. Žohar, L. Snoj, '''[[https://doi.org/10.1016/j.pnucene.2019.103042|On the dose fields due to activated cooling water in nuclear facilities]] ''', Progress in Nuclear Energy, Volume 117, 2019
 * Ž. Štancar et. al. '''[[https://doi.org/10.1088/1741-4326/ab2c8b|Multiphysics approach to plasma neutron source modelling at the JET tokamak]]''', Nuclear Fusion, Volume 59, Number 9
 * A.A. Astronomo, L.Snoj, et. al., '''[[https://doi.org/10.1016/j.net.2018.09.025 | Computational design and characterization of a subcritical reactor assembly with TRIGA fuel]] '''. ''Nuclear Engineering and Technology'', 2019, vol. 51, issue 2, p. 337-344,
 * D. Kotnik, L.Snoj, et al., '''[[https://doi.org/10.1016/j.anucene.2018.11.025|Validation and evaluation of the ADVANTG code on the ICSBEP skyshine benchmark experiment]] ''', ''Annals of Nuclear Energy'', Volume 125, March 2019, Pages 249-260
 * Review paper: A. Žohar & L. Snoj, '''[[https://doi.org/10.1016/j.pnucene.2019.103042|On the dose fields due to activated cooling water in nuclear facilities]] ''', ''Progress in Nuclear Energy'', Volume 117, November 2019, 103042
 * Ž. Štancar et. al. '''[[https://doi.org/10.1088/1741-4326/ab2c8b|Multiphysics approach to plasma neutron source modelling at the JET tokamak]]''', ''Nuclear Fusion'', Volume 59, Number 9
 * A.A. Astronomo, L.Snoj, et al., '''[[https://doi.org/10.1016/j.net.2018.09.025 | Computational design and characterization of a subcritical reactor assembly with TRIGA fuel]] '''. ''Nuclear Engineering and Technology'', 2019, vol. 51, issue 2, p. 337-344,
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 * K. Ambrožič, L.Snoj, et. al., '''[[https://doi.org/10.1016/j.nima.2018.09.103 |Delayed gamma determination at the JSI TRIGA reactor by synchronous measurements with fission and ionization chambers]]''', ''Nuclear instruments and methods in physics research''. Section A, 2018, vol. 911, p. 94-103
 * I. Lengar, L.Snoj, et. al., '''[[https://doi.org/10.1016/j.fusengdes.2018.04.052 | Activation material selection for multiple foil activation detectors in JET TT campaign ]]'''. Fusion engineering and design, 2018, vol. 136, p. 988-992
 * Ž. Štancar, L.Snoj, et. al., '''[[https://doi.org/10.1016/j.fusengdes.2018.04.065 | Generation of a plasma neutron source for Monte Carlo neutron transport calculations in the tokamak JET ]]'''. Fusion engineering and design, , 2018, part B, vol. 136, p. 1047-1051,
 * K. Ambrožič, L.Snoj, et al., '''[[https://doi.org/10.1016/j.nima.2018.09.103 |Delayed gamma determination at the JSI TRIGA reactor by synchronous measurements with fission and ionization chambers]]''', ''Nuclear instruments and methods in physics research''. Section A, 2018, vol. 911, p. 94-103
 * I. Lengar, L.Snoj, et al., '''[[https://doi.org/10.1016/j.fusengdes.2018.04.052 | Activation material selection for multiple foil activation detectors in JET TT campaign ]]'''. Fusion engineering and design, 2018, vol. 136, p. 988-992
 * Ž. Štancar, L.Snoj, et al., '''[[https://doi.org/10.1016/j.fusengdes.2018.04.065 | Generation of a plasma neutron source for Monte Carlo neutron transport calculations in the tokamak JET ]]''', ''Fusion engineering and design'', Volume 136, Part B, November 2018, Pages 1047-1051
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 * R. Henry, I. Tiselj, L. Snoj, '''[[ https://doi.org/10.1016/j.nucengdes.2018.03.015| Transient CFD/Monte-Carlo neutron transport coupling scheme for simulation of a control rod extraction in TRIGA reactor]]'''. ''Nuclear Engineering and Design'' , 2018, vol. 331, p. 302-312
 * I. Capan, L.Snoj, et. al. ''' [[https://doi.org/10.1063/1.5011124 | Double negatively charged carbon vacancy at the h- and k-sites in 4H-SiC : combined Laplace-DLTS and DFT study]]''', ''Journal of applied physics'', 2018, vol. 123, no. 16, p. 161597-1-161597-6
 * Ž. Štancar, L.Snoj, et. al., '''[[https://doi.org/10.1016/j.anucene.2017.09.039 | Computational validation of the fission rate distribution experimental benchmark at the JSI TRIGA Mark II research reactor using the Monte Carlo method ]]''', ''Annals of Nuclear Energy'', Volume 112, February 2018, Pages 94-108
 * T. Goričanec, L.Snoj, et. al., '''[[https://doi.org/10.1016/j.anucene.2017.08.017 | Evaluation of neutron flux and fission rate distributions inside the JSI TRIGA Mark II reactor using multiple in-core fission chambers ]]''', ''Annals of Nuclear Energy'', Volume 111, January 2018, Pages 407-440
 * G. Gorine, L.Snoj, et. al., '''[[https://doi.org/10.1109/TNS.2018.2797540 |Ultrahigh Fluence Radiation Monitoring Technology for the Future Circular Collider at CERN]]''', ''IEEE Transactions on Nuclear Science'', Volume: 65, Issue: 8, Aug. 2018
 * I. Capan, L.Snoj, et. al., '''[[https://doi.org/10.1063/1.5011124 |Double negatively charged carbon vacancy at the h- and k-sites in 4H-SiC: Combined Laplace-DLTS and DFT study]]''', ''Journal of Applied Physics'', 123, 161597, 2018
 * R. Henry, I. Tiselj & L. Snoj, '''[[ https://doi.org/10.1016/j.nucengdes.2018.03.015| Transient CFD/Monte-Carlo neutron transport coupling scheme for simulation of a control rod extraction in TRIGA reactor]]'''. ''Nuclear Engineering and Design'' , 2018, vol. 331, p. 302-312
 * I. Capan, L.Snoj, et al. ''' [[https://doi.org/10.1063/1.5011124 | Double negatively charged carbon vacancy at the h- and k-sites in 4H-SiC : combined Laplace-DLTS and DFT study]]''', ''Journal of applied physics'', 2018, vol. 123, no. 16, p. 161597-1-161597-6
 * Ž. Štancar, L.Snoj, et al., '''[[https://doi.org/10.1016/j.anucene.2017.09.039 | Computational validation of the fission rate distribution experimental benchmark at the JSI TRIGA Mark II research reactor using the Monte Carlo method ]]''', ''Annals of Nuclear Energy'', Volume 112, February 2018, Pages 94-108
 * T. Goričanec, L.Snoj, et al., '''[[https://doi.org/10.1016/j.anucene.2017.08.017 | Evaluation of neutron flux and fission rate distributions inside the JSI TRIGA Mark II reactor using multiple in-core fission chambers ]]''', ''Annals of Nuclear Energy'', Volume 111, January 2018, Pages 407-440
 * G. Gorine, L.Snoj, et al., '''[[https://doi.org/10.1109/TNS.2018.2797540 |Ultrahigh Fluence Radiation Monitoring Technology for the Future Circular Collider at CERN]]''', ''IEEE Transactions on Nuclear Science'', Volume: 65, Issue: 8, Aug. 2018
 * I. Capan, L.Snoj, et al., '''[[https://doi.org/10.1063/1.5011124 |Double negatively charged carbon vacancy at the h- and k-sites in 4H-SiC: Combined Laplace-DLTS and DFT study]]''', ''Journal of Applied Physics'', 123, 161597, 2018
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 * A. Čufar, L.Snoj, et. al., '''[[https://doi.org/10.13182/FST16-113|The analysis of the external neutron monitor responses in a simplified JET-Like Tokamak using ADVANTG]]'''. ''Fusion science and technology'', Volume 71, 2017 - Issue 2, Pages 162-176  * A. Čufar, L.Snoj, et al., '''[[https://doi.org/10.13182/FST16-113|The analysis of the external neutron monitor responses in a simplified JET-Like Tokamak using ADVANTG]]'''. ''Fusion science and technology'', Volume 71, 2017 - Issue 2, Pages 162-176
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 * J. Beričič & L. Snoj  '''[[ https://doi.org/10.1016/j.anucene.2016.10.014|On the calculation of angular neutron flux in MCNP]]'''. ''Annals of Nuclear Energy'', Volume 100, Part 2, February 2017, Pages 128-149  * J. Beričič & L. Snoj, '''[[ https://doi.org/10.1016/j.anucene.2016.10.014|On the calculation of angular neutron flux in MCNP]]'''. ''Annals of Nuclear Energy'', Volume 100, Part 2, February 2017, Pages 128-149
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 * R.Henry,.Tiselj & L.Snoj, '''[[https://doi.org/10.1016/j.anucene.2017.06.018| CFD/Monte-Carlo neutron transport coupling scheme, application to TRIGA reactor]]'''. ''Annals of Nuclear Energy'', Volume 110, December 2017, Pages 36-47
 * K.Ambrožič, G.Žerovnik & L.Snoj '''[[https://doi.org/10.1016/j.apradiso.2017.09.022|Computational analysis of the dose rates at JSI TRIGA reactor irradiation facilities]]'''. ''Applied Radiation and Isotopes'', Volume 130, December 2017, Pages 140-152
 * R.Henry,Tiselj & L.Snoj, '''[[https://doi.org/10.1016/j.anucene.2017.06.018| CFD/Monte-Carlo neutron transport coupling scheme, application to TRIGA reactor]]'''. ''Annals of Nuclear Energy'', Volume 110, December 2017, Pages 36-47
 * K.Ambrožič, G.Žerovnik & L.Snoj, '''[[https://doi.org/10.1016/j.apradiso.2017.09.022|Computational analysis of the dose rates at JSI TRIGA reactor irradiation facilities]]'''. ''Applied Radiation and Isotopes'', Volume 130, December 2017, Pages 140-152
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 * M.K. Jaradat, L.Snoj et. al., '''[[https://doi.org/10.1016/j.anucene.2016.06.003|Verification of MCNP6 model of the Jordan Research and Training Reactor (JRTR) for calculations of neutronic parameters]] ''', ''Annals of Nuclear Energy'', 2016, vol. 96, p. 96-103.
 * D. Čalič, G. Žerovnik, A. Trkov & L. Snoj '''[[https://doi.org/10.1016/j.apradiso.2015.10.022|Validation of the Serpent 2 code on TRIGA Mark II benchmark experiments]]''', ''Applied Radiation and Isotopes'', 2016, vol. 107, str. 165-170
 * L. Snoj et. al., '''[[https://doi.org/10.1016/j.fusengdes.2016.03.046|Neutronic analysis of JET external neutron monitor response]]'''. Fusion engineering and design, 2016, vol. 109, p. 99-103
 * A. Čufar, L. Snoj et. al.,'''[[https://doi.org/10.1016/j.fusengdes.2016.03.036|Comparison of DT neutron production codes MCUNED, ENEA-JSI source subroutine and DDT]]'''. ''Fusion engineering and design'', 2016, vol. 109, p. 164-168
 * D. Fourmentel, L. Snoj et. al.,'''[[https://doi.org/10.1109/TNS.2016.2608985|Delayed Gamma Measurements in Different Nuclear Research Reactors Bringing Out the Importance of Their Contribution in Gamma Flux Calculations]]'''. ''IEEE Transactions on Nuclear Science'', Volume: 63, Issue: 6, Dec. 2016
 * M.K. Jaradat, L.Snoj et al., '''[[https://doi.org/10.1016/j.anucene.2016.06.003|Verification of MCNP6 model of the Jordan Research and Training Reactor (JRTR) for calculations of neutronic parameters]] ''', ''Annals of Nuclear Energy'', 2016, vol. 96, p. 96-103.
 * D. Čalič, G. Žerovnik, A. Trkov & L. Snoj, '''[[https://doi.org/10.1016/j.apradiso.2015.10.022|Validation of the Serpent 2 code on TRIGA Mark II benchmark experiments]]''', ''Applied Radiation and Isotopes'', 2016, vol. 107, str. 165-170
 * L. Snoj et al., '''[[https://doi.org/10.1016/j.fusengdes.2016.03.046|Neutronic analysis of JET external neutron monitor response]]'''. ''Fusion engineering and design'', 2016, vol. 109, p. 99-103
 * A. Čufar, L. Snoj et al.,'''[[https://doi.org/10.1016/j.fusengdes.2016.03.036|Comparison of DT neutron production codes MCUNED, ENEA-JSI source subroutine and DDT]]'''. ''Fusion engineering and design'', 2016, vol. 109, p. 164-168
 * D. Fourmentel, L. Snoj et al.,'''[[https://doi.org/10.1109/TNS.2016.2608985|Delayed Gamma Measurements in Different Nuclear Research Reactors Bringing Out the Importance of Their Contribution in Gamma Flux Calculations]]''', ''IEEE Transactions on Nuclear Science'', Volume: 63, Issue: 6, Dec. 2016
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* P. Filiatre, L. Snoj et. al., '''[[https://doi.org/10.1109/TNS.2014.2356014|Experimental assessment of the kinetic parameters of the JSI TRIGA reactor]]'''. ''Annals of Nuclear Energy'', Volume 83, September 2015, Pages 236-245
 * G. Žerovnik,L. Snoj et. al., '''[[https://doi.org/10.1016/j.apradiso.2014.10.026|Validation of the neutron and gamma fields in the JSI TRIGA reactor using in-core fission and ionization chambers]]''', ''Applied Radiation and Isotopes'', Volume 96, February 2015, Pages 27-35
 * P. Filiatre, L. Snoj et al., '''[[https://doi.org/10.1109/TNS.2014.2356014|Experimental assessment of the kinetic parameters of the JSI TRIGA reactor]]'''. ''Annals of Nuclear Energy'', Volume 83, September 2015, Pages 236-245
 * G. Žerovnik,L. Snoj et al., '''[[https://doi.org/10.1016/j.apradiso.2014.10.026|Validation of the neutron and gamma fields in the JSI TRIGA reactor using in-core fission and ionization chambers]]''', ''Applied Radiation and Isotopes'', Volume 96, February 2015, Pages 27-35
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 * G. Žerovnik, M. Podvratnik & L. Snoj , '''[[https://doi.org/10.1016/j.anucene.2013.07.045|MOn normalization of fluxes and reaction rates in MCNP criticality calculations]]''', ''Annals of Nuclear Energy'', Volume 63, January 2014, Pages 126-128  * G. Žerovnik, M. Podvratnik & L. Snoj , '''[[https://doi.org/10.1016/j.anucene.2013.07.045|On normalization of fluxes and reaction rates in MCNP criticality calculations]]''', ''Annals of Nuclear Energy'', Volume 63, January 2014, Pages 126-128
 * V. Radulović, Ž.Štancar, L.Snoj & A.Trkov , '''[[https://doi.org/10.1016/j.apradiso.2013.11.027|Validation of absolute axial neutron flux distribution calculations with MCNP with 197Au(n,γ)198Au reaction rate distribution measurements at the JSI TRIGA Mark II reactor]]''', ''Applied Radiation and Isotopes'', Volume 84, 2014, Pages 57-65
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 * SNOJ, Luka, LENGAR, Igor, ČUFAR, Aljaž, SYME, B., TRKOV, Andrej, et al., JET EFDA Contributors. '''Calculations to support JET neutron yield calibration : Modelling of the JET remote handling system'''. Nuclear Engineering and Design, 2013, vol. 261, p. 244-250, doi: https://doi.org/10.1016/j.nucengdes.2012.09.036  * L.Snoj et al., '''[[https://doi.org/10.1016/j.nucengdes.2012.09.036 |Calculations to support JET neutron yield calibration : Modelling of the JET remote handling system]]''','' Nuclear Engineering and Design'', Volume 261, August 2013, Pages 244-250
 * I. Lengar & L.Snoj, '''[[https://doi.org/10.1016/j.nucengdes.2012.09.037 |Benchmark evaluation of interacting aluminum cylinders containing uranyl fluoride solution]]''','' Nuclear Engineering and Design'', Volume 261, August 2013, Pages 232-237
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 * SNOJ, Luka, TRKOV, Andrej, RAVNIK, Matjaž, ŽEROVNIK, Gašper. '''Testing of cross section libraries on zirconium benchmarks'''. Annals of Nuclear Energy, ISSN 0306-4549. , 2012, vol. 42, str. 71-79. doi: https://doi.org/10.1016/j.anucene.2011.12.001
 * SNOJ, Luka, ŽEROVNIK, Gašper, TRKOV, Andrej. '''Computational analysis of irradiation facilities at the JSI TRIGA reactor'''. Applied Radiation and Isotopes, ISSN 0969-8043. , 2012, vol. 70, p. 483-488. doi: https://doi.org/10.1016/j.apradiso.2011.11.042
 * KODELI, Ivan Aleksander, SNOJ, Luka. Evaluation and uncertainty analysis of the KRITZ-2 critical benchmark experiments. Nuclear science and engineering, ISSN 0029-5639, 2012, no. 3, vol. 171, p. 231-238 doi: https://doi.org/10.13182/NSE11-62
 * SYME, D.B., POPOVICHEV, Sergei, CONROY, S., LENGAR, Igor, SNOJ, Luka, TRKOV, Andrej, et al., JET EFDA Contributors. Fusion yield measurements on JET and their calibration. 2012, vol. 246, p. 185-190, doi: https://doi.org/10.1016/j.nucengdes.2011.08.003
 * L. Snoj et al., JET EFDA Contributors. '''Calculations to support JET neutron yield calibration : Contributions to the external neutron monitor responses'''. Nuclear Engineering and Design, ISSN 0029-5493, Vol. 246 2012, p. 191-197, doi: https://doi.org/10.1016/j.nucengdes.2011.07.011
 * L. Snoj, A. Trkov, M. Ravnik, G. Žerovnik'''[[https://doi.org/10.1016/j.anucene.2011.12.001|Testing of cross section libraries on zirconium benchmarks]]''', ''Annals of Nuclear Energy'', Volume 42, April 2012, Pages 71-79
 * L. Snoj, G. Žerovnik, A. Trkov, '''[[https://doi.org/10.1016/j.apradiso.2011.11.042|Computational analysis of irradiation facilities at the JSI TRIGA reactor]]''', ''Applied Radiation and Isotopes'', Volume 70, Issue 3, March 2012, Pages 483-488
 * I.A. Kodeli, L. Snoj, '''[[https://doi.org/10.13182/NSE11-62|Evaluation and uncertainty analysis of the KRITZ-2 critical benchmark experiments]]''', ''Nuclear science and engineering'', Volume 171, 2012 - Issue 3, Pages 231-238
 * D.B. Syme, L.Snoj et al., ''' [[https://doi.org/10.1016/j.nucengdes.2011.08.003|Fusion yield measurements on JET and their calibration]]''',''Nuclear Engineering and Design'', Volume 246, May 2012, Pages 185-190
 * L. Snoj et al., '''[[https://doi.org/10.1016/j.nucengdes.2011.07.011|Calculations to support JET neutron yield calibration : Contributions to the external neutron monitor responses]]''', ''Nuclear Engineering and Design'', Volume 246, May 2012, Pages 191-197
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 * L. Snoj, M. Kromar, G. Žerovnik & M.Ravnik '''[[https://doi.org/10.1016/j.nucengdes.2010.02.040 | Advanced methods in teaching reactor physics]]''', ''Nuclear Engineering and Design'', Volume 241, Issue 4, April 2011, Pages 1008-1012
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 * A. Trkov, G. Žerovnik, L. Snoj, M. Ravnik, '''[[https://doi.org/10.1016/j.nima.2009.08.079 | On the self-shielding factors in neutron activation analysis]]''', ''Nuclear instruments and methods in physics research. Section A'', 2009, issue 2, vol. 610, p., 553-565,
 * G. Žerovnik, L. Snoj, M. Ravnik, '''[[https://doi.org/10.13182/NSE163-183 | Optimization of spent nuclear fuel filling in canisters for deep repository]]'''. Nuclear science and engineering, 2009, vol. 163, p. 183-190. doi:
 * A. Trkov, G. Žerovnik, L. Snoj & M. Ravnik, '''[[https://doi.org/10.1016/j.nima.2009.08.079 | On the self-shielding factors in neutron activation analysis]]''', ''Nuclear instruments and methods in physics research. Section A'', 2009, issue 2, vol. 610, p., 553-565,
 * G. Žerovnik, L. Snoj & M. Ravnik, '''[[https://doi.org/10.13182/NSE163-183 | Optimization of spent nuclear fuel filling in canisters for deep repository]]''', ''Nuclear science and engineering'', 2009, vol. 163, p. 183-190.
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 * I.. Lengar, L. Snoj, P. Rogan, M .Ravnik, '''[[https://doi.org/10.3139/124.100571 | Re-evaluation of the criticality experiments of the "Otto Hahn Nuclear Ship" reactor]]'''. ''Kerntechnik'', 2008, vol. 73, p. 242-248.  * I.. Lengar, L. Snoj, P. Rogan & M .Ravnik, '''[[https://doi.org/10.3139/124.100571 | Re-evaluation of the criticality experiments of the "Otto Hahn Nuclear Ship" reactor]]''', ''Kerntechnik'', 2008, vol. 73, p. 242-248.
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 * L. Snoj & M. Ravnik, '''[[https://doi.org/10.3139/124.100351 | Effect of fuel particles' size and position variations of multiplication factor in pebble-bed nuclear reactors]]'''. ''Kerntechnik'', 2007, vol. 72, p. 251-254  * L. Snoj & M. Ravnik, '''[[https://doi.org/10.3139/124.100351 | Effect of fuel particles' size and position variations of multiplication factor in pebble-bed nuclear reactors]]''', ''Kerntechnik'', 2007, vol. 72, p. 251-254

Luka Snoj Homepage

luka_photo_01.jpg

Slovensko

English

Osnovni podatki

Basic info

izr. prof. dr. Luka Snoj
tel: (01) 588 5362
email: ime.priimek@ijs.si
Šifra raziskovalca: 27819

assoc. prof. dr. Luka Snoj
phone: +386 1 588 5362
email: name.surname@ijs.si

Položaj

Position

vodja odseka za reaktorsko fiziko
vodja reaktorja TRIGA
izredni profesor na Fakulteti za Matematiko in Fiziko Univerze v Ljubljani

head of reactor physics division
head of TRIGA reactor
associate professor at the Faculty of Mathematics and Physics University of Ljubljana

raziskovalna področja

Research areas

Teoretična reaktorska fizika in njena uporaba v energetskih in raziskovalnih jedrskih reaktorjih, predvsem pa sledeča področja:
* Monte Carlo transport nevtronov in fotonov v fuzijskih in fisijskih reaktorjih
* Monte Carlo preračuni fizikalnih parametrov raziskovalnih jedrskih reaktorjev
* Evalvacija referenčnih in kritičnih eksperimentov ter preračunov iz reaktorske fizike
* Evalvacija eksperimentalne negotovosti pri eksperimentih s transportom nevtronov
* Analiza aktivnosti materialov v fuzijskih in fisijskih reaktorjih
* Reaktorski preračuni in varnostne analize za močnostne in raziskovalne reaktorje
* Aktivacija materialov v fuzijskih in fisijskih reaktorjih
* Preračuni doz in razvoj biodozimetrov

Theoretical reactor physics related to practical applications in power and research reactors, in particular:
* Monte Carlo transport of neutrons and photons in fission and fusion nuclear reactors
* evaluation of critical and reactor physics experiments
* evaluation of experimental uncertainties in neutron transport experiments
* analysis of nuclear core and fuel management, design methods and calculations
* integral reactor experiments, criticality experiments and calculations
* management of the research reactor core, research reactor safety analysis
* fission and fusion reactor material activation
* dose calculations and development of biodosimeters

pedagoške aktivnosti

Teaching activities

Predmeti na FMF:
Radiacijska in reaktorska fizika
Fizika fisijskih reaktorjev
Eksperimentalna reaktorska fizika
Jedrska, reaktorska in radiološka fizika
Fizika nevtronskih jedrskih naprav
Specialistični seminar iz reaktorske fizike in tehnike
Več informacij za študente

Courses at FMF:
Radiation and reactor physics
Physics of fission reactors
Experimental reactor physics
Nuclear, reactor and radiation physics
Physics of neutron nuclear facilities

Članstva v strokovnih združenjih

Memberships

2019 - danes Institute of Electrical and Electronics Engineers
2017 - danes Slovensko akademsko tehniško-naravoslovno združenje
2011 - danes Društvo matematikov fizikov in astronomov
2009 - danes American Nuclear Society
2004 - danes Društvo jedrskih strokovnjakov Slovenije

Objave

Publications

COBISS: http://splet02.izum.si/cobiss/bibliography?code=27819
SICRIS: http://sicris.izum.si/search/rsr.aspx?lang=slv&id=20525
WOS: https://publons.com/researcher/4619782/luka-snoj/
SCOPUS: https://www.scopus.com/authid/detail.uri?authorId=14421887600&eid=2-s2.0-85065668269
ORCID: http://orcid.org/0000-0003-3097-5928
Google Scholar: https://scholar.google.com/citations?view_op=list_works&hl=en&user=rg2WqbcAAAAJ
Facebook: https://www.facebook.com/profile.php?id=100015016320891
Twitter: https://twitter.com/LukaSnoj
Linkedin: https://www.linkedin.com/in/luka-snoj-a42b2619/

COBISS: http://splet02.izum.si/cobiss/bibliography?code=27819&format=7&langbib=eng
SICRIS: http://sicris.izum.si/search/rsr.aspx?lang=eng&id=20525
SCOPUS: https://www.scopus.com/authid/detail.uri?authorId=14421887600&eid=2-s2.0-85065668269
ORCID: http://orcid.org/0000-0003-3097-5928
Google Scholar: https://scholar.google.com/citations?view_op=list_works&hl=en&user=rg2WqbcAAAAJ
Facebook: https://www.facebook.com/profile.php?id=100015016320891
Twitter: https://twitter.com/LukaSnoj
Linkedin: https://www.linkedin.com/in/luka-snoj-a42b2619/

Članstva v strokovnih združenjih

Strokovne funkcije, delo v odborih, komisijah

  • Član odbora za znanost (OECD NEA Nuclear science committee)
  • Član Koordinacijskega odbora Meddržavne komisije za spremljanje izvajanja Pogodbe med Vlado Republike Slovenije in Vlado Republike Hrvaške o ureditvi statusnih in drugih pravnih razmerij, povezanih z vlaganji, izkoriščanjem in razgradnjo Nuklearne elektrarne Krško
  • Član ekspertskih misij Mednarodne agencije za atomsko energijo (IAEA) (Tajska, DR Kongo, Filipini (2×), Jordanija, Peru).
  • Član koalicije vzhodnoevropskih raziskovalnih reaktorjev (EERRI – Eastern Europe Research Reactor Intitiative - http://www.iaea.org/OurWork/ST/NE/NEFW/Technical_Areas/RRS/eerri.html), ki deluje v okviru IAEA (http://www.iaea.org ). V letu 2011 predsednik koalicije.

  • Član delovne skupine IRPhEP (International Reactor Physics Experiment Evaluation Project- http://irphep.inl.gov in http://www.oecd-nea.org/science/wprs/irphe/), ki deluje v okviru OECD-NEA (http://www.oecd-nea.org).

  • Član delovne skupine ICSBEP (International Criticality Safety Benchmark Evaluation Project- http://icsbep.inel.gov in https://www.oecd-nea.org/science/wpncs/icsbep/), ki deluje v okviru OECD-NEA (http://www.oecd-nea.org).

  • Član programskega in organizacijskega odbora več ugledniih mednarodnih znanstvenih konferenc
  • Zunanji izpraševalec strokovne komisije za preverjanje strokovne usposobljenosti operaterjev na raziskovalnem reaktorju TRIGA Mark II. Imenovan s strani Uprave Republike Slovenije za jedrsko varnost.
  • Član programskega odbora Izobraževalnega centra za jedrsko tehnologijo (ICJT) na IJS.
  • Član komisije za jedrsko in sevalno problematiko na IJS (v letu 2022 predsednik)
  • Član Strokovnega sveta za fiziko in reaktorsko tehniko na IJS (predsednik v obdobju 2017 - 2021)
  • Član varnostnega odbora NEK, Krško Safety Commitee (2022+)

Izbrani članki (selected papers)

2022

2021

2020

2019

2018

2017

2016

2015

2014

2013

2012

2011

2010

2009

2008

2007

2006

Nastopi v javnosti (Public appearances)

Uporabne povezave (Useful links)

* spletna aplikacija za jedrske podatke, doze,.. - http://www.nucleonica.net/index.aspx

Snoj: FrontPage (last edited 2025-03-28 12:26:25 by LukaSnoj)