Decay studies of the π½-delayed neutron emitters 87 Br and 88 Br measured by means of the Modular Total Absorption Spectrometer at ORNL HRIBF
The Ξ² decays of 87 Br, 88 Br, and 87 Kr were measured with the Modular Total Absorption Spectrometer (MTAS) at Oak Ridge National Laboratoryβs Holifield Radioactive Ion Beam Facility (HRIBF). Both bromine isotopes are Ξ²-delayed neutron emitters that have large cumulative fission yields and were identified as top-priority cases for total absorption study by the Nuclear Energy Agency in 2007. Our investigations corroborate that the decay schemes of 87 Br and 88 Br suffer from the so-called pandemonium effect. Unique MTAS properties enable direct neutron measurements. Here, we present MTAS-derived Ξ²-delayed neutron spectra, Ξ²-delayed neutron emission probabilities of P n ( 87 Br) = 2.36(24)%, and P n ( 88 Br) = 6.4(6)%, and the Ξ²-delayed neutron transitions intensity of 4(2)% to the first excited 87 Kr state, populated in the Ξ²-neutron decay of 88Br. Incorporating new data into calculations of the electromagnetic decay heat component emitted during thermal neutron fission of 235 U and 239 Pu improves agreement with experimental data up to approximately 80 s after fission. The estimation of the nuclear reactor $\bar{Ξ½}_e$ flux results in changes of up to 1% in the expected $\bar{Ξ½}_e$ interactions with the detector material for 235 U, 238 U, 239Pu, and 241 Pu.