Simulation of dynamical (u,d,s,c) domain-wall/overlap quarks at the physical point

Abstract

We perform hybrid Monte-Carlo simulation of Nf=2+1+1 lattice QCD with domain-wall quarks at the physical point. The simulation is carried out on the L3 × T = 643 × 64 lattice with lattice spacing a 0.064 fm ( L > 4 fm, and Mπ L > 3 ), using the Nvidia DGX-1 (8 V100 GPUs interconnected by the NVLink). To attain the maximal chiral symmetry for a finite extent (Ns=16) in the fifth dimension, we use the optimal domain-wall fermion for the quark action, together with the exact one-flavor action for domain-wall fermion. We outline the salient features of our simulation (without topology freezing, and small residual mass), together with the preliminary result of the masses of π , K , and D .

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