Measurement of prompt fission neutron spectrum for spontaneous fission of Cf 252 using γ multiplicity tagging
Author(s) -
E. Blain,
A. Daskalakis,
R.C. Block,
Yaron Da
Publication year - 2017
Publication title -
physical review. c
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.679
H-Index - 235
eISSN - 2469-9993
pISSN - 2469-9985
DOI - 10.1103/physrevc.95.064615
Subject(s) - physics , spontaneous fission , fission , nuclear physics , scintillator , neutron , neutron emission , neutron temperature , spectral line , prompt neutron , spectrum (functional analysis) , detector , optics , quantum mechanics , astronomy
The prompt fission neutron spectrum from spontaneous fission of Cf is an integral part of several aspects of nuclear data. Not only is the spectrum itself of interest, but neutron detectors often use the spectrum for calibration, and other prompt fission neutron spectra are measured as a ratio to Cf. Therefore, reducing the uncertainties in this spectrum will allow for more accurate nuclear data to be available across a wide range of fields. The prompt fission neutron spectrum for the spontaneous fission of Cf was measured at Rensselaer Polytechnic Institute using the multiple γ tagging method with a 18.4-ng fission sample. An EJ-301 liquid scintillator fast neutron detector was used to measure the high energy portion of the spectrum, 0.5–7 MeV, and a thin EJ-204 plastic scintillator was used to measure the low energy portion of the spectrum, from 50 keV to 2 MeV. These spectra both show good agreement with the current evaluation of Cf and have low associated uncertainties providing a new high precision measurement that helps reduce the uncertainties in the prompt fission neutron spectrum for the spontaneous fission of Cf.
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