论文标题
一种新的方法,用于提取独立于模型的核水平密度远非稳定性
A novel approach for extracting model-independent nuclear level densities far from stability
论文作者
论文摘要
统计介质系统中量子状态的水平密度是各种物理领域的关键输入,包括核物理学,核天体物理学,原子质物理学及其应用。在原子核中,水平密度是其在相对较高能量下的复杂结构的基本量度。在这里,我们提出了第一个与短寿命不稳定核的绝对部分核水平密度无关的测量。为此,我们介绍了``形状方法''来提取$γ$ ray强度功能的形状。将形状方法与现有的$β$ -OSLO技术相结合,可以提取核水平密度,而无需理论输入。我们使用稳定的$^{76} $ ge核的结果对形状方法进行基准测试,从而与先前的实验结果找到了极好的一致性。我们将形状方法应用于短寿命$^{88} $ kr核的新实验数据。我们的方法为测量核水平密度的测量和$γ$ -Ray强度函数远离稳定性打开了大门,这是了解外来核在形成宇宙中的作用所需的关键输入。
The level density of quantum states in statistical mesoscopic systems is a critical input for various fields of physics, including nuclear physics, nuclear astrophysics, atomic physics and their applications. In atomic nuclei, the level density is a fundamental measure of their complex structure at relatively high energies. Here we present the first model-independent measurement of the absolute partial nuclear level density for a short-lived unstable nucleus. For this purpose, we introduce the ``Shape method'' to extract the shape of the $γ$-ray strength function. Combining the Shape method with the existing $β$-Oslo technique allows the extraction of the nuclear level density without the need for theoretical input. We benchmark the Shape method using results for the stable $^{76}$Ge nucleus, finding an excellent agreement to previous experimental results. We apply the Shape method to new experimental data on the short-lived $^{88}$Kr nucleus. Our method opens the door for measurements of the nuclear level density and $γ$-ray strength function far away from stability, a pivotal input required to understand the role of exotic nuclei in forming the cosmos.