论文标题
使用$ f_2^{n} $中子结构功能检查EMC效应
Examining the EMC Effect using the $F_2^{n}$ neutron structure function
论文作者
论文摘要
在深度非弹性散射(通常称为“ EMC效应”)中测得的核靶结构功能与氘的统一功能的统一性持续存在的神秘偏差已成为核培养基修饰研究对估价方案中核介质修饰的研究的规范。自由质子的结构函数从数十年来的许多实验中众所周知。但是,自由中子结构功能仍然很难访问。最近,它是在Parton分布功能提取框架内的全球数据的系统研究中提取的,可从CTEQ-Jefferson Lab(CJ)协作中获得。在这里,我们利用后者引入了一种新方法来研究核中的EMC效应,通过根据介质修饰的大小对自由中子和质子结构独立起作用,通过重新检查现有数据。从从世界数据中提取自由中子,可以检查氘中的核效应及其对我们对EMC效应的解释的贡献。在这项研究中,我们观察到,Deuteron与自由中子和质子结构函数的总和的比率具有一些$ X_ {B} $和$ Q^{2} $依赖关系,这些依赖性影响了通常观察到的EMC效应幅度的幅度。具体来说,当使用来自不同$ x_ {b} $和$ q^{2} $值的数据时,将获得不同的EMC斜率。尽管EMC和短距离相关效应之间的线性相关性持续存在,但是当去除Deuteron核效应时,将修改斜率。
The persistently mysterious deviations from unity of the ratio of nuclear target structure functions to those of deuterium as measured in deep inelastic scattering (often termed the "EMC Effect") have become the canonical observable for studies of nuclear medium modifications to free nucleon structure in the valence regime. The structure function of the free proton is well known from numerous experiments spanning decades. The free neutron structure function, however, has remained difficult to access. Recently it has been extracted in a systematic study of the global data within a parton distribution function extraction framework and is available from the CTEQ-Jefferson Lab (CJ) Collaboration. Here, we leverage the latter to introduce a new method to study the EMC Effect in nuclei by re-examining existing data in light of the the magnitude of the medium modifications to the free neutron and proton structure functions independently. From the extraction of the free neutron from world data, it is possible to examine the nuclear effects in deuterium and their contribution to our interpretation of the EMC Effect. In this study, we observe that the ratio of the deuteron to the sum of the free neutron and proton structure functions has some $x_{B}$ and $Q^{2}$ dependencies that impact the magnitude of the EMC Effect as typically observed. Specifically, different EMC slopes are obtained when data from different $x_{B}$ and $Q^{2}$ values are utilized. While a linear correlation persists between the EMC and short range correlation effects, the slope is modified when deuteron nuclear effects are removed.