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arXiv:1512.06746·v2·High Energy Physics — Lattice

Axion phenomenology and -dependence from lattice QCD

Claudio Bonati🇮🇹 · Massimo D'Elia🇮🇹 · Marco Mariti🇮🇹 · Guido Martinelli🇮🇹 · Michele Mesiti🇮🇹 · Francesco Negro🇮🇹 · Francesco Sanfilippo🇬🇧 · Giovanni Villadoro🇮🇹

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Abstract

We investigate the topological properties of QCD with physical quark masses, both at zero and finite temperature. We adopt stout improved staggered fermions and explore a range of lattice spacings fm. At zero temperature we estimate both finite size and finite cut-off effects, comparing our continuum extrapolated results for the topological susceptibility with predictions from chiral perturbation theory. At finite temperature, we explore a region going from up to around , where we provide continuum extrapolated results for the topological susceptibility and for the fourth moment of the topological charge distribution. While the latter converges to the dilute instanton gas prediction the former differs strongly both in the size and in the temperature dependence. This results in a shift of the axion dark matter window of almost one order of magnitude with respect to the instanton computation.

Comments: 24 pages, 12 figures, 5 tables, final version published in JHEP

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