Open Access
Numéro |
EPJ Web Conf.
Volume 225, 2020
ANIMMA 2019 – Advancements in Nuclear Instrumentation Measurement Methods and their Applications
|
|
---|---|---|
Numéro d'article | 07007 | |
Nombre de pages | 6 | |
Section | Safeguards, Homeland Security | |
DOI | https://doi.org/10.1051/epjconf/202022507007 | |
Publié en ligne | 20 janvier 2020 |
- M. Ito, L. Storasta, H. Tsuchida, “Development of 4HSiC Epitaxial Growth Technique Achieving High Growth Rate and Large-Area Uniformity” Appl. Phys. Expr. 1 (2008) 015001. [CrossRef] [Google Scholar]
- J.T. Goorley et al., “Initial MCNP6 Release Overview - MCNP6 version 1.0”, LA-UR-13-22934 (2013). [Google Scholar]
- M.B. Chadwick, et al., ENDF/B-VII.1 nuclear data for science and technology: cross sections, covariances, fission product yields and decay data, Nucl. Data Sheets, 112, 2011, pp. 2887–2996. [CrossRef] [Google Scholar]
- R. Jeraj, M. Ravnik, TRIGA mark II reactor: U(20)-zirconium hydride fuel rods in water with graphite reflector, IEU-COMP-THERM-003, International Handbook of Evaluated Criticality Safety Benchmark Experiments, NEA/NSC/DOC (95) 03, OECD-NEA, Paris, France, 2010. [Google Scholar]
- International Handbook of Evaluated Critical Safety Benchmark Experiments, Organization for Economic Cooperation and Development, Nuclear Energy Agency, NEA/NSC/DOC (95) 03, Paris (published on DVD). [Google Scholar]
- A. Kolšsek et al., Using TRIGA Mark II research reactor for irradiation with thermal neutrons, Nucl. Eng. Des, 283, 2015, pp. 155–161. [CrossRef] [Google Scholar]
- V. Radulović et al, Qualification of heavy water based irradiation device in the JSI TRIGA reactor for irradiations of FT-TIMS samples for nuclear safeguards, Nucl. Inst. Meth. A, 885, 2018, pp. 139–144. [CrossRef] [Google Scholar]
- V. Radulović et al, Report on experimental tests of a combined SPND and thermocouple sensor for the DISCOMS project at the JSI TRIGA reactor, JSI report No. 12547, Joef Stefan Institute, 2018. [Google Scholar]
- L. Snoj et al., Calculation of kinetic parameters for mixed TRIGA cores with Monte Carlo, Ann. Nucl. Energy, 37 (2), 2010, pp. 223–229. [Google Scholar]
- L. Snoj et al., Analysis of neutron flux distribution for the validation of computational methods for the optimization of research reactor utilization, Appl. Radiat. Isot., 69 (1), 2011, pp. 136–141. [Google Scholar]
- V. Radulović et al., Validation of absolute axial neutron flux distribution calcula- tions with MCNP with 197Au(n, γ)198Au reaction rate distribution measurements at the JSI TRIGA Mark II reactor, Appl. Rad. Isot., 84, 2014, pp. 57–65. [Google Scholar]
- L. Snoj, G. Žerovnik, A. Trkov, Computational analysis of irradiation facilities at the JSI TRIGA reactor, Appl. Rad. Isot., 70 (3), 2012, pp.483–488. [Google Scholar]
- A. Trkov, V. Radulović, L. Snoj, The GRUPINT neutron spectrum adjustment code - general features and characterization of the spectra in three irradiation channels of the JSI TRIGA reactor, Program and Book of abstracts, 16th International Symposium on Reactor Dosimetry, May 7 – 12, 2017, Santa Fe, USA. [Google Scholar]
- I. Capan et al., 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 (16), 2018, pp. 161597-1–161597-6. [Google Scholar]
- R. Capote et al., “Updating and Extending the IRDF-2002 Dosimetry Library,” Journal of ASTM International, 9 (4), 2012, pp. 1–9. [Google Scholar]
- V. Radulović et al., Characterization of ex-core irradiation facilities of the JSI TRIGA Mark II reactor, Proceedings, 21st International Conference Nuclear Energy for New Europe, September 5–7, 2012, Ljubljana, Slovenia. [Google Scholar]
- I. Mandić et al., “Bulk damage in DMILL npn bipolar transistors caused by thermal neutrons versus protons and fast neutrons”, IEEE Transactions on Nuclear Science, 51 (4), 2004, pp. 1752–1758. [Google Scholar]
- I. Mandić, V. Cindro, A. Gorišek, G. Kramberger and M. Mikuž, “Online Integrating Radiation Monitoring System for the ATLAS Detector at the Large Hadron Collider”, IEEE Transactions on Nuclear Science, 54 (4), 2007, pp. 1143–1150. [Google Scholar]