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Topological charge density correlator in Lattice QCD with two flavours of unimproved Wilson fermions

机译:具有两种未经改进的Wilson费米子味的Lattice QCD中的拓扑电荷密度相关器

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We study the two-point Topological Charge Density Correlator (TCDC) in lattice QCD with two degenerate flavours of unimproved Wilson fermions and Wilson gauge action at two values of lattice spacings and different volumes, for a range of quark masses. Configurations are generated with DDHMC algorithm and smoothed with HYP smearing. In order to shed light on the mechanisms leading to the observed suppression of topological susceptibility with respect to the decreasing quark mass and decreasing volume, in this work, we carry out a detailed study of the two-point TCDC. We have shown that, (1) the TCDC is negative beyond a positive core and radius of the core shrinks as lattice spacing decreases, (2) as the volume decreases, the magnitude of the contact term and the radius of the positive core decrease and the magnitude of the negative peak increases resulting in the suppression of the topological susceptibility as the volume decreases, (3) the contact term and radius of the positive core decrease with decreasing quark mass at a given lattice spacing and the negative peak increases with decreasing quark mass resulting in the suppression of the topological susceptibility with decreasing quark mass, (4) increasing levels of smearing suppresses the contact term and the negative peak keeping the susceptibility intact and (5) both the contact term and the negative peak diverge in nonintegrable fashion as lattice spacing decreases. It is gratifying to note that observations similar to 1 and 5 have been made using topological charge density operator based on chiral fermion. The observations 2 and 3 may be confirmed more precisely by using formulations based on chiral fermions.
机译:我们研究了在夸克质量范围内具有两种简并品味的未改进的Wilson费米子和Wilson规范作用下的QCD晶格QCD中的两点拓扑电荷密度相关器(TCDC)。使用DDHMC算法生成配置,并通过HYP拖尾平滑处理。为了阐明导致夸克质量减小和体积减小的拓扑磁化率抑制的机理,在这项工作中,我们对两点TCDC进行了详细研究。我们已经表明,(1)TCDC在正铁芯之外为负,并且铁芯半径随着晶格间距的减小而缩小;(2)随着体积的减小,接触项的大小和正铁芯的半径减小,并且当体积减小时,负峰的大小增加,导致拓扑敏感性降低。(3)在给定的晶格间距下,随着夸克质量的减小,正核的接触项和半径减小;而随着夸克的减小,负峰的增大导致夸克质量降低而抑制拓扑敏感性的质量;(4)涂抹水平的增加抑制了接触项和负峰,从而保持了敏感性;(5)接触项和负峰均以不可积分的方式发散晶格间距减小。令人高兴地注意到,已经使用基于手性费米子的拓扑电荷密度算子进行了类似于1和5的观察。通过使用基于手性费米子的配方,可以更精确地确认观察值2和3。

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