论文标题
在哈密顿晶格配方中使用威尔逊和交错的费米斯对施温格模型的质量重新归一化
Mass Renormalization of the Schwinger Model with Wilson and Staggered Fermions in the Hamiltonian Lattice Formulation
论文作者
论文摘要
到目前为止,哈密顿配方中的格子计算主要集中在交错的费米上。在这些程序中,我们研究了哈密顿配方中的威尔逊·费米恩斯(Wilson Fermions),并提出了一种确定质量转移的新方法。作为一项基准研究,我们检查了具有Wilson Fermions的一流schwinger模型和使用矩阵产品状态的拓扑$θ$ term。威尔逊·费米斯(Wilson Fermions)明确打破了手性对称性;因此,晶格模型的裸露质量获得了加性重归其化。为了直接测量这种质量转移,我们开发了一种适合哈密顿公式的方法,该方法依赖于以下事实:当重新归一化的质量为零时,电场密度的真空期望值消失了。我们检查了质量转移对晶格间距,晶格体积,$θ$参数和威尔逊参数的依赖性。然后,使用质量转移,我们执行电场密度的连续外推,并将所得质量依赖性与质量扰动理论的分析预测进行比较。我们证明,结合质量转移会显着改善连续性外推。最后,我们使用交错的费米斯而不是威尔逊·费米子(Wilson Fermions)将方法应用于同一模型,并将结果质量转移与最近的理论预测进行了比较。
Lattice computations in the Hamiltonian formulation have so far mainly focused on staggered fermions. In these proceedings, we study Wilson fermions in the Hamiltonian formulation and propose a new method to determine the resulting mass shift. As a benchmark study, we examine the one-flavour Schwinger model with Wilson fermions and a topological $θ$-term using matrix product states. Wilson fermions explicitly break chiral symmetry; thus, the bare mass of the lattice model receives an additive renormalization. In order to measure this mass shift directly, we develop a method that is suitable for the Hamiltonian formulation, which relies on the fact that the vacuum expectation value of the electric field density vanishes when the renormalized mass is zero. We examine the dependence of the mass shift on the lattice spacing, the lattice volume, the $θ$-parameter, and the Wilson parameter. Using the mass shift, we then perform the continuum extrapolation of the electric field density and compare the resulting mass dependence to the analytical predictions of mass perturbation theory. We demonstrate that incorporating the mass shift significantly improves the continuum extrapolation. Finally, we apply our method to the same model using staggered fermions instead of Wilson fermions and compare the resulting mass shift to recent theoretical predictions.