Thermal axion production in QCD from the lattice
Luis Neubauer, Guy D. Moore
Abstract
Thermal axion production in the early Universe is controlled by the QCD topological-charge-density spectral function evaluated on the light-cone as a function of momentum k. We show how weighted integrals of this quantity can be computed using Euclidean lattice QCD without any analytic continuation, similar to what Harvey Meyer and collaborators have recently done for the photon production rate. We then test the approach in pure-glue QCD at T=1.5 Tc, finding that it is feasible to extract at least one and possibly two finite weighted k-integrals of the k-dependent production rate. This opens the possibility for extractions in full QCD at temperatures around and somewhat above the crossover temperature, where other methods are not reliable.
Create a lesson
Related papers
Unpolarized quasi- and pseudo-distributions at one loop: gluon correlator decomposition, matching, and the region |x|>1
Christopher Monahan, Tobias Neumann
Information-preserving boundary reconstruction for center-flux energetics in a regulated SU(3) gauge ladder
Hongyu Ma
No-go theorems for dual Hamiltonians of Non-Abelian Lattice Gauge Theories
Marco Garofalo, Tobias Hartung, Timo Jakobs et al.
MORE Thermal Gauge Theories at Finite θ and μ from Real-Time Quantum Simulation
Henry Lamm
Equation of State of the Quark-Gluon Plasma in an External Magnetic Field to Fourth Order
L. Levkova, C. DeTar
Improving hadron creation operators for charmonium, glueballs and baryons
Juan Andrés Urrea-Niño, John Bulava, Nikolai Husung et al.