Physik Department, Technische Universität München, 85748 Garching, Germany.
Forschungs-Neutronenquelle Heinz Maier-Leibnitz (FRM II), Technische Universität München, 85748 Garching, Germany.
Phys Rev Lett. 2014 Mar 28;112(12):122501. doi: 10.1103/PhysRevLett.112.122501. Epub 2014 Mar 24.
An experiment was performed at the scientific neutron source FRM II in Garching to determine the cumulative antineutrino spectrum of the fission products of U238. Target foils of natural uranium were irradiated with a thermal and a fast neutron beam and the emitted β spectra were recorded with a γ-suppressing electron telescope. The obtained β spectrum of the fission products of U235 was normalized to the data of the magnetic spectrometer BILL. This method strongly reduces systematic errors in the U238 measurement. The β spectrum of U238 was converted into the corresponding ν¯e spectrum. The final ν¯e spectrum is given in 250 keV bins in the range from 2.875 to 7.625 MeV with an energy-dependent error of 3.5% at 3 MeV, 7.6% at 6 MeV, and ≳14% at energies ≳7 MeV (68% confidence level). Furthermore, an energy-independent uncertainty of ∼3.3% due to the absolute normalization is added. Compared to the generally used summation calculations, the obtained spectrum reveals a spectral distortion of ∼10% but returns the same value for the mean cross section per fission for the inverse beta decay.
在加兴的科学中子源 FRM II 进行了一项实验,以确定 U238 裂变产物的累积反中微子能谱。用热中子束和快中子束辐照天然铀靶箔,并使用γ抑制电子望远镜记录发射的β能谱。将 U235 裂变产物的获得的β能谱归一化为磁谱仪 BILL 的数据。该方法大大降低了 U238 测量中的系统误差。将 U238 的β能谱转换为相应的 ν¯e 能谱。最终的 ν¯e 能谱以 250 keV 为间隔给出,范围为 2.875 至 7.625 MeV,在 3 MeV 处的能量相关误差为 3.5%,在 6 MeV 处为 7.6%,在能量≳7 MeV 时为≳14%(置信度为 68%)。此外,还添加了由于绝对归一化引起的约 3.3%的能量无关不确定性。与通常使用的求和计算相比,所得到的谱揭示了约 10%的谱失真,但对于逆β衰变的每个裂变的平均截面返回相同的值。