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The topological susceptibility from grand canonical simulations in the interacting instanton liquid model: chiral phase transition and axion mass

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arxiv 0908.0324 v4 pith:4ABVNTGR submitted 2009-08-03 hep-ph astro-ph.COhep-lat

classification hep-phastro-ph.COhep-lat
keywords lambdaaxionmasstemperaturealphacanonicalchiralfrac
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

This is the last in a series of papers on the topological susceptibility in the interacting instanton liquid model (IILM). We will derive improved finite temperature interactions to study the thermodynamic limit of grand canonical Monte Carlo simulations in the quenched and unquenched case with light, physical quark masses. In particular, we will be interested in chiral symmetry breaking. The paper culminates by giving, for the first time, a well-motivated temperature-dependent axion mass. Especially, this work finally provides a computation of the axion mass in the low temperature regime, $m^2_a f^2_a = 1.46 10^{-3}\Lambda^4 \frac{1+0.50 T/\Lambda}{1+(3.53 T/\Lambda)^{7.48}}$. It connects smoothly to the high temperature dilute gas approximation; the latter is improved by including quark threshold effects. To compare with earlier studies, we also provide the usual power-law $m^2_a = \frac{\alpha_a \Lambda^4}{f_a^2 (T/\Lambda)^n}$, where $\Lambda=400\units{MeV}$, $n=6.68$ and $\alpha=1.68 10^{-7}$.

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Cited by 2 Pith papers

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    Adding a spectator PQ field with a large early-universe value and a high-dimensional S^mP mixing term can solve the axion domain wall problem and suppress isocurvature, allowing non-trivial domain wall numbers with HI...

  2. The landscape of QCD axion models

    hep-ph 2020-03 unverdicted novelty 2.0 of 10

    Review classifies QCD axion models extending the standard mass-coupling window and updates bounds from cosmology, astrophysics, and experiments.

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