Open Access
Issue
EPJ Web Conf.
Volume 253, 2021
ANIMMA 2021 – Advancements in Nuclear Instrumentation Measurement Methods and their Applications
Article Number 04021
Number of page(s) 5
Section Research Reactors and Particle Accelerators
DOI https://doi.org/10.1051/epjconf/202125304021
Published online 19 November 2021
  1. S. Nehr et al., “On-line monitoring of multiplexed femtosecond Fiber Bragg Gratings exposed to high temperature and high neutron fluence”, 26th International Conference on Optical Fiber Sensors, OFS-26, Poster presentation, Lausanne, Switzerland, 24-28 September, 2018 [Google Scholar]
  2. B. Bouvry et al., “Multispectral pyrometry for surface temperature measurement of oxidized Zircaloy claddings, ” Infrared Physics and Technology, vol. 83, pp. 78-87, 2017 [CrossRef] [Google Scholar]
  3. G. Cheymol, A. Verneuil, P. Grange, H. Maskrot and C. Destouches, “HighTemperature Measurements With a Fabry–Perot Extensometer, ” in IEEE Transactions on Nuclear Science, vol. 67, no. 4, pp. 552-558, April 2020, doi: 10.1109/TNS.2020.2975707. [CrossRef] [Google Scholar]
  4. P. Van Uffelen, G. Pastore, “Oxide Fuel Performance Modeling and Simulation”, Comprehensive, Nuclear Materials, vo. 2, 2020, pp 363-416. [Google Scholar]
  5. S. Girard et al., “Overview of radiation induced point defects in silicabased optical fibers, ” Reviews in Physics, 2019, doi: https://doi.org/10.1016/j.revip.2019.100032 [Google Scholar]
  6. Primak, “Fast-neutron-induced changes in quartz and vitreous silica”, Phys.Rev.B 110 (6), 1240-1254(1958). [CrossRef] [Google Scholar]
  7. L. Remy, G. Cheymol, A. Gusarov, A. Morana, E. Marin and S. Girard, “Compaction in Optical Fibres and Fibre Bragg Gratings Under Nuclear Reactor High Neutron and Gamma Fluence, ” in IEEE Transactions on Nuclear Science, vol. 63, no. 4, pp. 2317-2322, Aug. 2016, doi: 10.1109/TNS.2016.2570948. [CrossRef] [Google Scholar]
  8. David L. Griscom, “γ and fission-reactor radiation effects on the visiblerange transparency of aluminium-jacked, all-silica optical fibers, ” Journal of Applied Physics, vol. 80, no. 4, May 1996, pp 2142-2155 [CrossRef] [Google Scholar]
  9. T. Allanche, “Effect of high radiation doses (MGy) on light Emitting Diodes and optical glasses”, HAL id: tel-03215958, May 2021 [Google Scholar]
  10. T. Shikama, T. Kakuta, M. Narui, T. Sagawa, H. Kayano, “Optical properties in fibers during irradiation in a fission reactor”, J. Nucl. Mater 225 (1995) 324-327 [CrossRef] [Google Scholar]
  11. D. W. Cooke, B. L. Benett, E. H. Farnum, “Optical absorption of neutron irradiated silica fibers”, J. Nucl. Mater, May 1996, pp 214-218 [CrossRef] [Google Scholar]
  12. T. Kakuta, T. Shikama, M. Narui, T. Sagawa “Behavior of optical fibers under heavy irriadiations”, Fus. Eng. Des. 51-52 (2000) 179-183 [Google Scholar]
  13. B. Brichard, P. Borgemans, A. F. Fernandez, K. Lammens, M. Decréton, “Radiation effect in silica optical fiber exposed to intense mixed neutrongamma radiation field”, IEEE Trans. Nucl. Sci, vol. 48, no. 6, Nov. 2001, pp 2069-2073 [CrossRef] [Google Scholar]
  14. T. Kakuta, T. Shikama, T. Nishitani, B. Brichard, A. Krassilinikov, A. Tomashuk, S. Yamamoto, S. Kasai “Round-robin irradiation test of radiation resistant optical fibers for ITER diagnostic application”, Journal of nuclear materials 307-311 (2002) 1277-1281 [CrossRef] [Google Scholar]
  15. G. Cheymol, H. Long, J. F. Villard, B. Brichard, “High level gamma and neutron irradiation of silica optical fibers in CEA OSIRIS nuclear reactor”, IEEE. Trans. Nucl. Sci, vol. 55, no. 4, Aug. 2008, pp 2252-2258 [CrossRef] [Google Scholar]
  16. P. F. Kashaykin, A. L. Tomashuk, S.A. Vasiliev, A.D. Ignatyev, A.A. Shaimerdenov,Yu. V. Ponkratov, T. V. Kulsartov, Y. A. Kenzhin, Sh. Kh. Gizatulin, T. K. Zholdybayev, Y. V. Chikhray, S. L. Semjonov, “Radiation resistance of single-mode optical fibres with view to in-reactor applications”, Nuclear Materials and Energy 27 (2021) 10098. [Google Scholar]
  17. C. Z. Tan, “Temperature dependence of refractive index of glassy SiO2 in the infrared wavelength range”, Journal of Physics and Chemistry of Solids 61 (2000) 1315-1320. [CrossRef] [Google Scholar]