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BETA-DELAYED NEUTRON SPECTROSCOPY USING TRAPPED IONS

机译:使用捕获离子的β延迟中子谱

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The properties of beta-delayed neutron emission are of interest to both the pure and applied nuclear physics communities. For example, branching ratios are needed to determine how the short-lived neutron-rich isotopes synthesized in the astrophysical r process decay back to stability to become the isotopes we observe today. Also, neutron energy spectra and branching ratios are required for the design of nuclear reactors. Reliable measurements of the beta-delayed neutron properties can be performed with unprecedented precision using an ion trap surrounded by radiation detectors. When a radioactive ion decays in the trap,the recoil-daughter nucleus and emitted particles emerge from the ~1 mm~3 trap volume with minimal scattering. These properties allow the momentum and energy of the emitted neutron to be precisely reconstructed from the nuclear recoil. Spectroscopy of beta-delayed neutrons can be performed with high efficiency and energy resolutions approaching ~3%.Results from a proof-of-principle experiment and an on-going measurement campaign will be discussed.
机译:纯粹和应用的核物理社区β延迟中子发射的性质对纯粹和应用的核物理社区感兴趣。例如,需要支化比以确定如何在天体物理R过程中合成的短寿液丰富的同位素腐烂,以恢复稳定,以成为我们今天观察到的同位素。此外,核反应堆的设计需要中子能谱和支化比。可以使用由辐射探测器包围的离子陷阱以前所未有的精度来执行β延迟中子特性的可靠测量。当捕集器中的放射性离子衰减时,再蒸馏子核和发射的颗粒从〜1mm〜3的捕集体积中出现,具有最小的散射。这些性能允许发射中子的动量和能量从核反冲精确地重建。 β延迟中子的光谱可以通过高效率和能量分辨率来进行〜3%的能量分辨率进行〜3%。从原则上的实验和持续的测量活动将进行讨论。

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