论文标题
在$^{28} $ si和$^{40} $ ca上捕获MUON捕获后,核多体对粒子排放的影响
Nuclear Many-Body Effect on Particle Emissions Following Muon Capture on $^{28}$Si and $^{40}$Ca
论文作者
论文摘要
Muon捕获的核心为我们提供了充分的核特性知识。最近,这种反应引起了电子产品的关注,因为有人认为在硅上捕获恒河捕获后带电的粒子排放触发了内存设备中不可忽略的软误差。为了从核物理学的角度研究粒子的排放,我们使用MUON捕获和最新粒子发射模型的微观模型开发了一种新方法。我们关注了MUON捕获速率,粒子发射光谱以及彼此紧密相互关联的多重性,并发现包括两粒子两孔激发的核多体相关性是同时解释它们的关键。
Muon captures on nuclei have provided us with plenty of knowledge of nuclear properties. Recently, this reaction attracts attention in electronics, because it is argued that charged particle emissions following muon capture on silicon trigger non-negligible soft errors in memory devices. To investigate the particle emissions from a nuclear physics point of view, we develop a new approach using a microscopic model of muon capture and up-to-date particle emission models. We paid attention to the muon capture rates, the particle emission spectra, and the multiplicities that have a close interrelation with each other, and found that the nuclear many-body correlation including two-particle two-hole excitations is a key to explaining them simultaneously.