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8. Takada H, Kosako K, Fukahori T (2009) Validation of JENDL high-energy file through analyses
of spallation experiments at incident proton energies from 0.5 to 2.83 GeV. J Nucl Sci Technol
46:589
9. Spriggs GD (1993) Two Rossi-α techniques for measuring the effective delayed neutron
fraction. Nucl Sci Eng 113:161
10. Kitamura Y, Pázsit I, Wright J et al (2005) Calculation of the pulsed Feynman- and Rossi-alpha
formulae with delayed neutrons. Ann Nucl Energy 32:671
11. Degweker SB, Rana YS (2007) Reactor noise in accelerator driven systems-II. Ann Nucl Energy
34:463
12. Yamanaka M, Pyeon CH, Kim SH et al (2017) Effective delayed neutron fraction in acceleratordriven system experiments with 100 MeV protons at Kyoto University Critical Assembly. J
Nucl Sci Technol 54:293
13. Shibata K, Iwamoto O, Nakagawa T et al (2011) JENDL-4.0: a new library for nuclear science
and technology. J Nucl Sci Technol 48:1
14. Chiba G, Nagaya Y, Mori T (2011) On effective delayed neutron fraction calculations with
iterated fission probability. J Nucl Sci Technol 48:1163
15. Yamanaka M, Pyeon CH, Endo T et al (2020) Experimental analyses of β eff / in acceleratordriven system at Kyoto University Critical Assembly. J Nucl Sci Technol 57:205
16. Watanabe K, Kawabata Y, Yamazaki A et al (2015) Development of an optical fiber type
detector using a Eu:LiCaAlF6 scintillator for neutron monitoring in boron neutron capture
therapy. Nucl Instrum Methods A 802:1
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particle transport code system. LA-UR-08-07258
18. Endo T, Yamamoto A (2007) Development of new solid angle quadrature sets to satisfy eveand odd- moment conditions. J Nucl Sci Technol 44:1249
19. Rearden BT, Jessee MA (2017) SCALE code system. ORNL/TM-2005/39 Version 6.2.3
20. Endo T, Chiba G, van Rooijen WFG et al (2018) Experimental analysis and uncertainty quantification using random sampling technique for ADS experiments at KUCA. J Nucl Sci Technol
55:450
21. Cullen DE, Clouse CJ, Procassini R et al (2003) Little RC. Static and dynamic criticality: are
they different? UCRT-TR-201506
22. MacFarlane RE, Muir DW (1994) The NJOY nuclear data processing system, version91. LAUR-08-07258
23. Pyeon CH, Yamanaka M, Endo T et al (2020) Neutron generation time in highly-enriched
uranium core at Kyoto University Critical Assembly. Nucl Sci Eng 194:1116
24. Talamo A, Gohar Y, Sadovich S et al (2013) Correction factor for the experimental prompt
neutron decay constant. Ann Nucl Energy 62:421
25. Simmons BE, King JS (1958) A pulsed technique for reactivity determination. Nucl Sci Eng
3:595
M. Yamanaka
7. Goorley JT et al (2013) Initial MCNP6 release overview—MCNP6 version 1.0. LA-UR-1322934
8. Takada H, Kosako K, Fukahori T (2009) Validation of JENDL high-energy file through analyses
of spallation experiments at incident proton energies from 0.5 to 2.83 GeV. J Nucl Sci Technol
46:589
9. Spriggs GD (1993) Two Rossi-α techniques for measuring the effective delayed neutron
fraction. Nucl Sci Eng 113:161
10. Kitamura Y, Pázsit I, Wright J et al (2005) Calculation of the pulsed Feynman- and Rossi-alpha
formulae with delayed neutrons. Ann Nucl Energy 32:671
11. Degweker SB, Rana YS (2007) Reactor noise in accelerator driven systems-II. Ann Nucl Energy
34:463
12. Yamanaka M, Pyeon CH, Kim SH et al (2017) Effective delayed neutron fraction in acceleratordriven system experiments with 100 MeV protons at Kyoto University Critical Assembly. J
Nucl Sci Technol 54:293
13. Shibata K, Iwamoto O, Nakagawa T et al (2011) JENDL-4.0: a new library for nuclear science
and technology. J Nucl Sci Technol 48:1
14. Chiba G, Nagaya Y, Mori T (2011) On effective delayed neutron fraction calculations with
iterated fission probability. J Nucl Sci Technol 48:1163
15. Yamanaka M, Pyeon CH, Endo T et al (2020) Experimental analyses of β eff / in acceleratordriven system at Kyoto University Critical Assembly. J Nucl Sci Technol 57:205
16. Watanabe K, Kawabata Y, Yamazaki A et al (2015) Development of an optical fiber type
detector using a Eu:LiCaAlF6 scintillator for neutron monitoring in boron neutron capture
therapy. Nucl Instrum Methods A 802:1
17. Alcouffe RE, Baker RS, Dahl JA et al (2008) PARTISN: a time-dependent, parallel neutral
particle transport code system. LA-UR-08-07258
18. Endo T, Yamamoto A (2007) Development of new solid angle quadrature sets to satisfy eveand odd- moment conditions. J Nucl Sci Technol 44:1249
19. Rearden BT, Jessee MA (2017) SCALE code system. ORNL/TM-2005/39 Version 6.2.3
20. Endo T, Chiba G, van Rooijen WFG et al (2018) Experimental analysis and uncertainty quantification using random sampling technique for ADS experiments at KUCA. J Nucl Sci Technol
55:450
21. Cullen DE, Clouse CJ, Procassini R et al (2003) Little RC. Static and dynamic criticality: are
they different? UCRT-TR-201506
22. MacFarlane RE, Muir DW (1994) The NJOY nuclear data processing system, version91. LAUR-08-07258
23. Pyeon CH, Yamanaka M, Endo T et al (2020) Neutron generation time in highly-enriched
uranium core at Kyoto University Critical Assembly. Nucl Sci Eng 194:1116
24. Talamo A, Gohar Y, Sadovich S et al (2013) Correction factor for the experimental prompt
neutron decay constant. Ann Nucl Energy 62:421
25. Simmons BE, King JS (1958) A pulsed technique for reactivity determination. Nucl Sci Eng
3:595
