论文标题
单单瘤中用相对论的Fock图通过相对论的Fock图进行淬灭的λ旋转轨道分裂
Quenched Λ spin-orbit splitting by relativistic Fock diagram in single-Λ hypernuclei
论文作者
论文摘要
我们将相对论的Hartree-Fock(RHF)理论扩展到研究单$ nuc核的结构。密度依赖性是在梅森 - 核苷和梅森 - hyperon耦合强度中都采用的,并且诱导的$λ$ -Nucleon($λn$)有效相互作用是通过将$λ$分离能量拟合到几个单个单$λ$ hypernuclei的实验数据中来确定的。然后发现,RHF模型在正常原子核中描述的核动力学平衡,即核能吸引力和排斥性相互作用之间的平衡在单一$λ$ hypernuclei中发生了巨大变化,揭示了Fock术语通过$λ$ hyperon的$λ$ Hyperon的作用。 Since only one hyperon exists in a single-$Λ$ hypernucleus, the overwhelmed $ΛN$ and $ΛΛ$ attractions via the Hartree than the $ΛΛ$ repulsion from the Fock terms require an alternation of meson-hyperon coupling strengths in RHF to rebalance the effective nuclear force with the strangeness degree of freedom, leading to an improved description of $Λ$ Dirac mass and correspondingly a systematically与那些没有Fock项的相对论均值范围(RMF)方法相比,当前模型中的$σ$ - $λ$耦合强度$ g_ {σλ} $与那些相对论的平均场(RMF)方法相比。结果,有效的$λ$旋转轨道耦合电位在高核中的基态下被抑制,并且这些RHF模型与RMF病例相比,相应地预测了$λ$旋转轨道分裂的淬灭效果。此外,$λ$旋转轨道拆分可以通过不断发展与超子相关的耦合$ g_ {σλ} $和$ g_ {ωλ} $同时降低,与经验值与RHF型号的较大型号的Meson-Hyperon couplelings的更大参数空间相协调。
We extend the relativistic Hartree-Fock (RHF) theory to study the structure of single-$Λ$ hypernuclei. The density dependence is taken in both meson-nucleon and meson-hyperon coupling strengths, and the induced $Λ$-nucleon ($ΛN$) effective interactions are determined by fitting $Λ$ separation energies to the experimental data for several single-$Λ$ hypernuclei. The equilibrium of nuclear dynamics described by the RHF model in normal atomic nuclei, namely, the balance between nuclear attractive and repulsive interactions, is then found to be drastically changed in single-$Λ$ hypernuclei, revealing a different role of Fock terms via $Λ$ hyperon from the nucleon exchange. Since only one hyperon exists in a single-$Λ$ hypernucleus, the overwhelmed $ΛN$ and $ΛΛ$ attractions via the Hartree than the $ΛΛ$ repulsion from the Fock terms require an alternation of meson-hyperon coupling strengths in RHF to rebalance the effective nuclear force with the strangeness degree of freedom, leading to an improved description of $Λ$ Dirac mass and correspondingly a systematically reduced $σ$-$Λ$ coupling strength $g_{σΛ}$ in current models as compared to those relativistic mean-field (RMF) approaches without Fock terms. As a result, the effective $Λ$ spin-orbit coupling potential in the ground state of hypernuclei is suppressed, and these RHF models predict correspondingly a quenching effect in $Λ$ spin-orbit splitting in comparison with the RMF cases. Furthermore, the $Λ$ spin-orbit splitting could decrease efficiently by evolving the hyperon-relevant couplings $g_{σΛ}$ and $g_{ωΛ}$ simultaneously, where to reconcile with the empirical value the RHF models address a larger parameter space of meson-hyperon couplings.