论文标题
在$m_π\ sim 450 $ meV的低能散射和有效的互动中
Low-energy Scattering and Effective Interactions of Two Baryons at $m_π\sim 450$ MeV from Lattice Quantum Chromodynamics
论文作者
论文摘要
使用晶格QCD(LQCD)研究两个八位位baryons之间的相互作用,其质量大于物理的夸克质量,对应于$M_π\ sim 450 $ MEV和$ M_ {k} \ sim 596 $ 596 $ MEV的pion质量。分析的两巴里元系统范围从陌生$ s = 0 $到$ s = -4 $,包括旋转单词和三胞胎$ nn $,$σn$($ i = 3/2 $)和$ξ届$状态,旋转单键$σς$($ i = 2 $)和$ eC($ i = 3/2 $ i = 3/2 $),以及spine = 3/2 $ i = 3/2 $ i = 3/2 $ clip-yt($ i = 3/2 $) 状态。 $ S $波散射相,低能散射参数以及适用的结合能,使用Lüscher的形式主义提取。虽然结果与大多数系统在此Pion质量上绑定是一致的,但发现自旋三键$σn$和$ξ项$通道中的相互作用是令人反感的,并且不支持绑定状态。使用先前研究的结果,在较大的pion质量上,进行结合能将到物理点的外推与实验值和现象学预测进行了比较。限制了与两种巴里族相互作用相关的无酸EFT的低能系数,包括负责$ SU(3)$风味对称性破坏的相互作用。观察到$ su(3)$对称性大约在夸克群众的选定值以及$ su(6)$ spin-floval-symmetry上,预测在大$ n_c $上。进一步观察到了以前在较大的斜质质量上发现的意外$ su(16)$对称的残余物。这些LQCD计算限制的$ SU(6)$ - 对称的EFT用于对两种巴里元系统进行预测,在本研究中,低能散射参数不能直接用LQCD确定,并约束所有领先$ SU的系数(3)$ subly-s-Mety-Metysricric Itsprotions的系数,证明了两种预测能力的功能,以匹配两种预测的功能。
The interactions between two octet baryons are studied at low energies using lattice QCD (LQCD) with larger-than-physical quark masses corresponding to a pion mass of $m_π\sim 450$ MeV and a kaon mass of $m_{K}\sim 596$ MeV. The two-baryon systems that are analyzed range from strangeness $S=0$ to $S=-4$ and include the spin-singlet and triplet $NN$, $ΣN$ ($I=3/2$), and $ΞΞ$ states, the spin-singlet $ΣΣ$ ($I=2$) and $ΞΣ$ ($I=3/2$) states, and the spin-triplet $ΞN$ ($I=0$) state. The $s$-wave scattering phase shifts, low-energy scattering parameters, and binding energies when applicable, are extracted using Lüscher's formalism. While the results are consistent with most of the systems being bound at this pion mass, the interactions in the spin-triplet $ΣN$ and $ΞΞ$ channels are found to be repulsive and do not support bound states. Using results from previous studies at a larger pion mass, an extrapolation of the binding energies to the physical point is performed and is compared with experimental values and phenomenological predictions. The low-energy coefficients in pionless EFT relevant for two-baryon interactions, including those responsible for $SU(3)$ flavor-symmetry breaking, are constrained. The $SU(3)$ symmetry is observed to hold approximately at the chosen values of the quark masses, as well as the $SU(6)$ spin-flavor symmetry, predicted at large $N_c$. A remnant of an accidental $SU(16)$ symmetry found previously at a larger pion mass is further observed. The $SU(6)$-symmetric EFT constrained by these LQCD calculations is used to make predictions for two-baryon systems for which the low-energy scattering parameters could not be determined with LQCD directly in this study, and to constrain the coefficients of all leading $SU(3)$ flavor-symmetric interactions, demonstrating the predictive power of two-baryon EFTs matched to LQCD.