论文标题
$ su(3)$ m_ {ud} \ simeq m_s^{\ rm phys} $的两种努克隆S波互动:$ m_ {ud} \ simeq m_s^{\ rm phys} $:使用随机laplacian heaviside方法计算的第一个晶格QCD计算
Two-nucleon S-wave interactions at the $SU(3)$ flavor-symmetric point with $m_{ud}\simeq m_s^{\rm phys}$: a first lattice QCD calculation with the stochastic Laplacian Heaviside method
论文作者
论文摘要
我们报告了随机拉普拉斯重质方法的首次应用,用于将与晶格QCD的多粒子相互作用计算到两个核子系统中。像拉普拉斯(Laplacian Heaviside)方法一样,该方法允许构建插值操作员,这些操作员可用于构建一组正定的两核子相关函数,这与文献中几乎所有其他应用于两个核心的其他应用不同。它还允许进行多种分析,其中形成了插值操作员的最佳线性组合,主要是夫妇到系统的特征状态。利用这种方法已经变得至关重要,以帮助解决文献中的差异,以了解这两个isospin通道中的两个核子是否形成了比物理重的触角质量的结合状态,即使在$ su(3)$中,差异仍然存在,即使在$ SU(3)$中,所有Quark symetric Point the Bexterment Quark Masse shore Quark Masses shore Quark syne the Bosical Strance Strange Strange Strange Strange Quark Quark群体附近。这是一系列旨在解决这一差异的论文中的第一篇。在目前的工作中,我们在没有六夸克操作员的情况下采用随机拉普拉斯赫维赛方法,在$ a \ sim0.086 $ 〜fm的晶格间距上,$ l = 48a \ simeq4.1 $ 〜fm和pion Mass $m__π\ simeq714 $ mev。通过这种设置,观察到的两核子能级的频谱强烈不掩盖在deuteron或dineutron通道中的结合状态。
We report on the first application of the stochastic Laplacian Heaviside method for computing multi-particle interactions with lattice QCD to the two-nucleon system. Like the Laplacian Heaviside method, this method allows for the construction of interpolating operators which can be used to construct a positive definite set of two-nucleon correlation functions, unlike nearly all other applications of lattice QCD to two nucleons in the literature. It also allows for a variational analysis in which optimal linear combinations of the interpolating operators are formed that couple predominantly to the eigenstates of the system. Utilizing such methods has become of paramount importance in order to help resolve the discrepancy in the literature on whether two nucleons in either isospin channel form a bound state at pion masses heavier than physical, with the discrepancy persisting even in the $SU(3)$-flavor symmetric point with all quark masses near the physical strange quark mass. This is the first in a series of papers aimed at resolving this discrepancy. In the present work, we employ the stochastic Laplacian Heaviside method without a hexaquark operator in the basis at a lattice spacing of $a\sim0.086$~fm, lattice volume of $L=48a\simeq4.1$~fm and pion mass $m_π\simeq714$ MeV. With this setup, the observed spectrum of two-nucleon energy levels strongly disfavors the presence of a bound state in either the deuteron or dineutron channel.