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Hyeon-dong Han

Publications and source records attributed to Hyeon-dong Han.

3 recordsLinked to original sources

Pion-nucleus elastic scatterings incorporating medium effects within the Eikonal-Glauber mode

In this present investigation, we explore the elastic scattering of pions with nuclei ($π$-$A$), primarily influenced by the $Δ$(1232) resonance, within the Eikonal-Glauber model. The medium effects are incorporated by considering nuclear-density ($ρ_A$) dependent masses of baryons and strong coupling constants. These dependencies are computed and parameterized up to $\mathcal{O}(ρ_A^2)$ based on the quark-meson coupling (QMC) model. The Wood-Saxon type density profile is utilized for the bound nucleons within finite nuclei. The element $π^+$-$N$ scattering cross section for the Glauber approach is determined using the conventional effective Lagrangian method. Subsequently, we analyze the total cross sections for elastic scattering with $^4$He and $^{12}$C targets. Our numerical results demonstrate a favorable agreement with JINR data for the $^4$He target, accurately reproducing the total cross-section. However, when considering the $^{12}$C target, deviations of approximately $\lesssim10\%$. We also consider the multiple-scattering effects inside the nucleus approximately, using the single-channel meson-baryon Bethe-Salpeter equation, resulting in the effective width broadening of the $Δ$ resonance to reproduce the data better.

hep-ph

A study of medium effects in elastic $πN$ and $πA$ scatterings

The elastic $πN$ scattering is investigated for the $I=3/2$ channel dominated by the $Δ(1232)$ resonance at finite baryon density, employing the effective Lagrangian approach at the tree-level Born approximation. The quark-meson coupling (QMC) model is employed to describe the in-medium baryon properties that are constructed at the quark level, such as the nucleon and $Δ$ masses, and $Δ$ full decay width. I reproduce the experimental data of the cross-section in a vacuum as a justification of our approach and then analyze the in-medium total and differential cross-sections as well as proton-spin asymmetry. Following the results of the in-medium elastic $πN$ scattering calculation, the elastic $πA$ scattering is investigated at finite baryon density in the framework of the Eikonal Glauber model for the light nuclei, $^4\mathrm{He}$ and $^{12}\mathrm{C}$. For the description of the finite nuclei, the Wood-Saxon density profile, and an expansion of the charge distribution as a sum of Gaussians are employed in this study. The nuclear density distribution $ρ_A$, effective baryon mass $m^*_B$, in-medium decay width $Γ^*_Δ$, and in-medium coupling constants $f^*_{πNN}$ and $f^*_{πN Δ}$ are analyzed as well as the total cross-section. The results show that the effective baryon mass and cross-sections in the medium decrease as density increases except for the $Δ$ decay width, which increases as the density increases. The elastic $πA$ scattering at the tree-level Born approximation reproduces well the experimental data for $^4\mathrm{He}$ but overestimates for $^{12}\mathrm{C}$. Results for the in-medium $Δ$ resonance and other findings in this work will be relevant for the relativistic heavy-ion collision experiments.

nucl-th

A study of the elastic $πN$ scattering at finite baryon density

We investigate the elastic $πN$ scattering for the $I=3/2$ channel dominated by the $Δ(1232)$ resonance at finite baryon density $ρ_B$ for the symmetric nuclear matter, employing the effective Lagrangian approach at the tree-level Born approximation. The quark-meson coupling (QMC) model and linear-density approximation are employed to describe the medium modifications for the in-medium baryon properties, such as the nucleon and $Δ$ masses, and $Δ$ full decay width. We first reproduce the experimental data in vacuum by fitting the model parameters, then analyze various physical observables including total and differential cross sections, proton-spin asymmetry in medium. It turns out that the $Δ$-resonance contribution becomes diminished with respect to $ρ_B$, due to the weaker $πN$-interaction strength in medium. Beyond the $Δ$-resonance region $\sqrt{s}\gtrsim1.5$ GeV, the cross sections are almost independent of the density. The present results will be useful to understand the role of the $Δ$ resonance in the neutron-star equation of state (EoS) as well as in relativistic heavy-ion collision experiments.

nucl-th