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Sparsening algorithm for multihadron lattice QCD correlation functions

机译:多肩晶格QCD相关函数的稀释算法

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Modern advances in algorithms for lattice QCD calculations have steadily driven down the resources required to generate gauge field ensembles and calculate quark propagators, such that, in cases relevant to nuclear physics, performing quark contractions to assemble correlation functions from propagators has become the dominant cost. This work explores a propagator sparsening algorithm for forming correlation functions describing multihadron systems, such as light nuclei, with reduced computational cost. The algorithm constructs correlation functions from sparsened propagators defined on a coarsened lattice geometry, where the sparsened propagators are obtained from propagators computed on the full lattice. This algorithm is used to study the low-energy QCD ground-state spectrum using a single Wilson-clover lattice ensemble with m π ≈ 800 ? ? MeV . It is found that the extracted ground state masses and binding energies, as well as their statistical uncertainties, are consistent when determined from correlation functions constructed from sparsened and full propagators. In addition, while evidence of modified couplings to excited states is observed in sparsened correlation functions, it is demonstrated that these effects can be removed, if desired, with an inexpensive modification to the sparsened estimator.
机译:用于格子QCD计算的现代进步已经稳步推动了生成仪表驻留所需的资源,并计算夸克传播者,使得在与核物理学相关的情况下,执行从传播者组装相关功能的夸克凹陷已成为主导成本。这项工作探讨了用于形成相关函数的传播稀疏算法,所述相关函数描述了诸如光核的多支碳系统,降低计算成本。该算法构造来自在较粗晶格几何形状上限定的稀疏传播器的相关函数,其中稀疏的传播者从完整晶格上计算的传播者获得。这种算法用于使用单个威尔逊 - 三叶草晶格合奏来研究低能量QCD地态谱与MΠ≈800?还Mev。发现提取的地位质量和结合能以及它们的统计不确定性是一致的,当从由稀疏和完全传播者构造的相关函数确定时一致。另外,在稀疏相关函数中观察到改进的兴奋状态的证据,但是证明了如果需要,可以去除这些效果,对稀疏估计器具有廉价的修改。

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