Feynman-[alpha] Analysis for a Thermal Subcritical Reactor System Driven by an Unstable 14 MeV Neutron Source

In a series of Feynman-α correlation measurements for a thermal Accelerator-Driven System (ADS) with 14 MeV neutrons at the Kyoto University Critical Assembly (KUCA), an unstable accelerator condition such as a drift of beam current has been frequently observed. Neutron source instability caused by...

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Veröffentlicht in:Journal of nuclear science and technology 2011-09, Vol.48 (9), p.1272
Hauptverfasser: TANINAKA, Hiroshi, MIYOSHI, Atsuko, HASHIMOTO, Kengo, PYEON, Cheol Ho, SANO, Tadafumi, MISAWA, Tsuyoshi, SUGIYAMA, Wataru, OHSAWA, Takaaki
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Sprache:eng
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Zusammenfassung:In a series of Feynman-α correlation measurements for a thermal Accelerator-Driven System (ADS) with 14 MeV neutrons at the Kyoto University Critical Assembly (KUCA), an unstable accelerator condition such as a drift of beam current has been frequently observed. Neutron source instability caused by such unavoidable beam-current instability resulted in a divergent variance-to-mean ratio and, consequently, the correlation analysis failed. Nevertheless, we attempted to apply a difference-filtering technique to the correlation analysis to reduce the influence of the above instability. The present attempt resulted in consistent prompt-neutron decay constants with those obtained in a previous pulsed neutron experiment. The application of the filtering is expected to enhance the robustness of Feynman-α analysis against various instabilities of accelerator operation in actual ADS.
ISSN:0022-3131
1881-1248
DOI:10.3327/jnst.48.1272