1 Introduction
9
10. Lebrat JF, Aliberti G, D’Angelo A et al (2008) Global results from deterministic and stochastic
analysis of the MUSE-4 experiments on the neutronics of the accelerator-driven systems. Nucl
Sci Eng 158:49
11. Persson CM, Fokau A, Serafimovich I et al (2008) Pulsed neutron source measurements in the
subcritical ADS experiment YALINA-booster. Ann Nucl Energy 35:2357
12. Tesinsky M, Berglöf C, Bäck T et al (2011) Comparison of calculated and measured reaction
rates obtained through foil activation in the subcritical dual spectrum facility YALINA-booster.
Ann Nucl Energy 38:1412
13. Talamo A, Gohar Y, Sadovich S et al (2013) Correction factor for the experimental prompt
neutron decay constant. Ann Nucl Energy 62:421
14. Uyttenhove W, Baeten P, Van den Eyden G et al (2011) The neutronic design of a critical lead
reflected zero-power reference core for on-line subcriticality measurements in acceleratordriven systems. Ann Nucl Energy 38:1519
15. Uyttenhove W, Lathouwers D, Kloosterman JL et al (2014) Methodology for modal analysis
at pulsed neutron source experiments in accelerator-driven systems. Ann Nucl Energy 72:286
16. Lecouey JL, Marie N, Ban G et al (2015) Estimate of the reactivity of the VENUS-F subcritical
configuration using a Monte Carlo MSM method. Ann Nucl Energy 83:65
17. Marie N, Lecouey JL, Lehaut G et al (2019) Reactivity monitoring of the accelerator driven
VENUF-F subcritical reactor with the “current-to-flux” method. Ann Nucl Energy 128:12
18. Pyeon CH, Hirano Y, Misawa T et al (2007) Preliminary experiments on accelerator-driven
subcritical reactor with pulsed neutron generator in Kyoto University Critical Assembly. J Nucl
Sci Technol 44:1368
19. Pyeon CH, Hervault M, Misawa T et al (2008) Static and kinetic experiments on acceleratordriven system in Kyoto University Critical Assembly. J Nucl Sci Technol 45:1171
20. Pyeon CH, Shiga H, Misawa T et al (2009) Reaction rate analyses for an accelerator-driven
system with 14 MeV neutrons in the Kyoto University Critical Assembly. J Nucl Sci Technol
46:965
21. Pyeon CH, Misawa T, Lim JY et al (2009) First injection of spallation neutrons generated by
high-energy protons into the Kyoto University Critical Assembly. J Nucl Sci Technol 46:1091
22. Shahbunder H, Pyeon CH, Misawa T et al (2010) Experimental analysis for neutron multiplication by using reaction rate distribution in accelerator-driven system. Ann Nucl Energy
37:592
23. Taninaka H, Hashimoto K, Pyeon CH et al (2010) Determination of lambda-mode eigenvalue
separation of a thermal accelerator-driven system from pulsed neutron experiment. J Nucl Sci
Technol 47:376
24. Kawaguchi S, Misawa T, Pyeon CH et al (2010) A new experimental correction method for
the first-order perturbation approximation on the steady subcritical reactor. J Nucl Sci Technol
47:550
25. Shahbunder H, Pyeon CH, Misawa T et al (2010) Subcritical multiplication factor and source
efficiency in accelerator-driven system. Ann Nucl Energy 37:1214
26. Shahbunder H, Pyeon CH, Misawa T et al (2010) Effects of neutron spectrum and external
neutron source on neutron multiplication parameters in accelerator-driven system. Ann Nucl
Energy 37:1785
27. Pyeon CH, Shiga H, Abe K et al (2010) Reaction rate analysis of nuclear spallation reactions
generated by 150, 190 and 235 MeV protons. J Nucl Sci Technol 47:1090
28. Yagi T, Misawa T, Pyeon CH et al (2011) A small high sensitivity neutron detector using a
wavelength shifting fiber. Appl Radiat Isot 69:176
29. Taninaka H, Hashimoto K, Pyeon CH et al (2011) Determination of subcritical reactivity of a
thermal accelerator-driven system from beam trip and restart experiment. J Nucl Sci Technol
48:873
30. Pyeon CH, Lim JY, Takemoto Y et al (2011) Preliminary study on the thorium-loaded
accelerator-driven system with 100 MeV protons at the Kyoto University Critical Assembly.
Ann Nucl Energy 38:2298
9
10. Lebrat JF, Aliberti G, D’Angelo A et al (2008) Global results from deterministic and stochastic
analysis of the MUSE-4 experiments on the neutronics of the accelerator-driven systems. Nucl
Sci Eng 158:49
11. Persson CM, Fokau A, Serafimovich I et al (2008) Pulsed neutron source measurements in the
subcritical ADS experiment YALINA-booster. Ann Nucl Energy 35:2357
12. Tesinsky M, Berglöf C, Bäck T et al (2011) Comparison of calculated and measured reaction
rates obtained through foil activation in the subcritical dual spectrum facility YALINA-booster.
Ann Nucl Energy 38:1412
13. Talamo A, Gohar Y, Sadovich S et al (2013) Correction factor for the experimental prompt
neutron decay constant. Ann Nucl Energy 62:421
14. Uyttenhove W, Baeten P, Van den Eyden G et al (2011) The neutronic design of a critical lead
reflected zero-power reference core for on-line subcriticality measurements in acceleratordriven systems. Ann Nucl Energy 38:1519
15. Uyttenhove W, Lathouwers D, Kloosterman JL et al (2014) Methodology for modal analysis
at pulsed neutron source experiments in accelerator-driven systems. Ann Nucl Energy 72:286
16. Lecouey JL, Marie N, Ban G et al (2015) Estimate of the reactivity of the VENUS-F subcritical
configuration using a Monte Carlo MSM method. Ann Nucl Energy 83:65
17. Marie N, Lecouey JL, Lehaut G et al (2019) Reactivity monitoring of the accelerator driven
VENUF-F subcritical reactor with the “current-to-flux” method. Ann Nucl Energy 128:12
18. Pyeon CH, Hirano Y, Misawa T et al (2007) Preliminary experiments on accelerator-driven
subcritical reactor with pulsed neutron generator in Kyoto University Critical Assembly. J Nucl
Sci Technol 44:1368
19. Pyeon CH, Hervault M, Misawa T et al (2008) Static and kinetic experiments on acceleratordriven system in Kyoto University Critical Assembly. J Nucl Sci Technol 45:1171
20. Pyeon CH, Shiga H, Misawa T et al (2009) Reaction rate analyses for an accelerator-driven
system with 14 MeV neutrons in the Kyoto University Critical Assembly. J Nucl Sci Technol
46:965
21. Pyeon CH, Misawa T, Lim JY et al (2009) First injection of spallation neutrons generated by
high-energy protons into the Kyoto University Critical Assembly. J Nucl Sci Technol 46:1091
22. Shahbunder H, Pyeon CH, Misawa T et al (2010) Experimental analysis for neutron multiplication by using reaction rate distribution in accelerator-driven system. Ann Nucl Energy
37:592
23. Taninaka H, Hashimoto K, Pyeon CH et al (2010) Determination of lambda-mode eigenvalue
separation of a thermal accelerator-driven system from pulsed neutron experiment. J Nucl Sci
Technol 47:376
24. Kawaguchi S, Misawa T, Pyeon CH et al (2010) A new experimental correction method for
the first-order perturbation approximation on the steady subcritical reactor. J Nucl Sci Technol
47:550
25. Shahbunder H, Pyeon CH, Misawa T et al (2010) Subcritical multiplication factor and source
efficiency in accelerator-driven system. Ann Nucl Energy 37:1214
26. Shahbunder H, Pyeon CH, Misawa T et al (2010) Effects of neutron spectrum and external
neutron source on neutron multiplication parameters in accelerator-driven system. Ann Nucl
Energy 37:1785
27. Pyeon CH, Shiga H, Abe K et al (2010) Reaction rate analysis of nuclear spallation reactions
generated by 150, 190 and 235 MeV protons. J Nucl Sci Technol 47:1090
28. Yagi T, Misawa T, Pyeon CH et al (2011) A small high sensitivity neutron detector using a
wavelength shifting fiber. Appl Radiat Isot 69:176
29. Taninaka H, Hashimoto K, Pyeon CH et al (2011) Determination of subcritical reactivity of a
thermal accelerator-driven system from beam trip and restart experiment. J Nucl Sci Technol
48:873
30. Pyeon CH, Lim JY, Takemoto Y et al (2011) Preliminary study on the thorium-loaded
accelerator-driven system with 100 MeV protons at the Kyoto University Critical Assembly.
Ann Nucl Energy 38:2298
