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Domain wall fermion QCD with the exact one flavor algorithm

机译:具有精确一种风味算法的畴壁费米子QCD

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Lattice QCD calculations including the effects of one or more nondegenerate sea quark flavors are conventionally performed using the rational hybrid Monte?Carlo (RHMC) algorithm, which computes the square root of the determinant of D ? D , where D is the Dirac operator. The special case of two degenerate quark flavors with the same mass is described directly by the determinant of D ? D —in particular, no square root is necessary—enabling a variety of algorithmic developments, which have driven down the cost of simulating the light (up and down) quarks in the isospin-symmetric limit of equal masses. As a result, the relative cost of single quark flavors—such as the strange or charm—computed with RHMC has become more expensive. This problem is even more severe in the context of our measurements of the Δ I = 1 / 2 K → π π matrix elements on lattice ensembles with G -parity boundary conditions, since G -parity is associated with a doubling of the number of quark flavors described by D , and thus RHMC is needed for the isospin-symmetric light quarks as well. In this paper we report on our implementation of the exact one flavor algorithm (EOFA) introduced by the TWQCD Collaboration for simulations including single flavors of domain wall quarks. We have developed a new preconditioner for the EOFA Dirac equation, which both reduces the cost of solving the Dirac equation and allows us to reuse the bulk of our existing high-performance code. Coupling these improvements with careful tuning of our integrator, the time per accepted trajectory in the production of our 2 + 1 flavor G -parity ensembles with physical pion and kaon masses has been decreased by a factor of 4.2.
机译:常规地,使用有理混合蒙特卡洛(RHMC)算法执行包括一个或多个非简并夸克味的影响的格点QCD计算,该算法可计算D?行列式的平方根。 D,其中D是Dirac算子。 D?的行列式直接描述了两种质量相同的简并夸克风味的特殊情况。 D-尤其是不需要平方根-可以进行各种算法开发,这降低了在等质量的等旋对称限制内模拟轻(上下)夸克的成本。结果,用RHMC计算的单个夸克风味(例如奇异味或魅力)的相对成本变得更加昂贵。在我们使用G-奇偶性边界条件对晶格集合上的ΔI = 1/2 K→ππ矩阵元素进行测量的情况下,这个问题甚至更加严重,因为G-奇偶性与夸克数的增加有关。 D所描述的风味,因此等旋对称轻夸克也需要RHMC。在本文中,我们报告了TWQCD协作公司引入的用于精确模拟的精确一种风味算法(EOFA)的实现,该模拟包括畴壁夸克的单一风味。我们已经为EOFA Dirac方程开发了一种新的预处理器,它既降低了解决Dirac方程的成本,又使我们能够重用大量现有的高性能代码。将这些改进与我们的积分器进行仔细调整相结合,在我们的2 + 1风味G奇偶团与物理介子和kaon团块的生产中,每条可接受轨迹的时间减少了4.2倍。

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