论文标题
核子结构函数比率$ \ frac {f_2^n} {f_2^p} $ for mirror nuclei $^3 $ he和$^3 $ h
Physical Implications of the Extrapolation and Statistical Bootstrap of the Nucleon Structure Function Ratio $\frac{F_2^n}{F_2^p}$ for Mirror Nuclei $^3$He and $^3$H
论文作者
论文摘要
在马拉松数据核结构函数比率上使用了统计引导的核物理示例,$ \ frac {f_2^n} {f_2^p} $,在夸克动量分数$ x_b \ rightarrow0 $和$ x_b \ x_b \ rightArrow1 $区域中。作为夸克动量分数$ x_b \ rightArrow 1 $ ther 0.4,将$ f_2 $比率值推算为0.4,并且将此值与理论预测进行了比较。当$ x_b \ rightarrow 0 $时,推断的比率偏爱简单的Isospin对称模型,而在低动量分数处的海夸岛完全优势。在高$ x_b $时,质子夸克分布函数比率$ d/u $来自$ x \ rightArrow 1 $比率$ \ frac {f_2^n} {f_2^p} \ rightArrow 0.4 $,被发现为$ d/u \ rightarrow 1/6 $。我们对$ \ frac {f_2^n} {f_2^p} $比率和$ d/u $ parton分布函数比率最紧密匹配扰动qCD值的$ \ frac {f_2^n} {f_2^n} {f_2^n} {f_2^n} {f_2^n} {f_2^n} {f_2^n}的推算值的推断值最紧密地匹配QUARK计数和Helicity Consection参数的扰动QCD值,但仍有大约7 \%的差异。如果两个兼容模型同时在核子波函数中起作用,则可以改善与理论预测的不匹配。一个例子是核素波函数,该波函数由夸克 - 二何种状态的线性组合和3价夸克相关状态的线性组合和系数相关,这些系数结合了,可以使外推的$ f_2 $比率为$ 0.4 $。
A nuclear physics example of statistical bootstrap is used on the MARATHON data nucleon structure function ratio, $\frac{F_2^n}{F_2^p}$, in the quark momentum fraction $x_B\rightarrow0$ and $x_B\rightarrow1$ regions. The extrapolated $F_2$ ratio value as quark momentum fraction $x_B\rightarrow 1$ approaches 0.4 and this value is compared to theoretical predictions. The extrapolated ratio when $x_B\rightarrow 0$ favors the simple model of isospin symmetry with the complete dominance of seaquarks at low momentum fraction. At high-$x_B$, the proton quark distribution function ratio $d/u$ is derived from the $x\rightarrow 1$ ratio $\frac{F_2^n}{F_2^p}\rightarrow 0.4$ and found to be $d/u \rightarrow 1/6$. Our extrapolated values for both the $\frac{F_2^n}{F_2^p}$ ratio and the $d/u$ parton distribution function ratio most closely match perturbative QCD values from quark counting and helicity conservation arguments but still differ by roughly $7\%$. The mismatch to theoretical predictions may be ameliorated if two compatible models act simultaneously in the nucleon wavefunction. One such example is nucleon wavefunctions composed of a linear combination of a quark-diquark state and a 3-valence quark correlated state with coefficients that combine to give the extrapolated $F_2$ ratio of $0.4$.