三重态 $2^{3}S(L = 0)$ 态在双μ子氦 ${}^{3}$He $\mu_{2}$ 原子中的超精细结构分裂
Hyperfine structure splitting for the triplet $2^{3}S(L = 0)-$state in the two-muonic helium ${}^{3}$He $μ_{2}$ atom
浏览论文内容
中文总结 AI 辅助
本研究高精度计算了双μ子氦原子中三重态 $2^{3}S$ 态的超精细分裂,结果为 $5.1623403103010 \times 10^{7}$ MHz,不确定度仅 $\pm 10$ Hz,源于μ子壳层与核自旋相互作用。
中文摘要 AI 辅助
双μ子氦 ${}^{3}$He $\mu_{2}$ 原子中三重态 $2^{3}S(L = 0)$ 态的超精细结构分裂被高精度确定。这种结构源于三重态双μ子壳层与中心氦核非零自旋之间的超精细(或自旋-自旋)相互作用。我们得到的超精细结构分裂结果为 $\Delta \approx 5.1623403103010 \cdot 10^{7}$ $MHz$,其中标准不确定度评估为 $\pm 10$ $Hz$。
英文摘要
The hyperfine structure splitting for the triplet $2^{3}S(L = 0)-$state in the two-muonic helium ${}^{3}$He $μ_{2}$ atom is determined to high accuracy. Such a structure arises as a result of hyperfine (or spin-spin) interaction between the triplet two-muonic shell and non-zero spin of the central helicon nucleus. Our result for the hyperfine structure splitting is $Δ\approx 5.1623403103010 \cdot 10^{7}$ $MHz$, where the standard uncertainty has been evaluated as $\pm 10$ $Hz$.
发表机构
- University of Western Ontario(韦仕敦大学)
机构由 AI 辅助整理,请以论文原文为准。