Abstract We present a new mechanism to deplete the energy density of the QCD axion, making decay constants as high as f a ≃ 1017 GeV viable for generic initial conditions. In our setup, the axion couples to a massless dark photon with a coupling that is moderately stronger than the axion coupling to gluons. Dark photons are produced copiously through a tachyonic instability when the axion field starts oscillating, and an exponential suppression of the axion density can be achieved. For a large part of the parameter space this dark radiation component of the universe can be observable in upcoming CMB experiments. Such dynamical depletion of the axion density ameliorates the isocurvature bound on the scale of inflation. The depletion also amp...
AbstractThe string axion may provide the most attractive solution to the strong CP problem in QCD. H...
The Peccei-Quinn mechanism presents a neat solution to the strong CP problem. As a by-product, it pr...
A stronger QCD in the early Universe renders the axion heavy, and thus can suppress the isocurvature...
We present a new mechanism to deplete the energy density of the QCD axion, making decay constants as...
We propose a new mechanism to suppress the axion isocurvature perturbation, while producing the righ...
If dark matter is composed of axions, then axion stars form in the cores of dark matter halos. These...
Abstract Ignorance of the initial condition for the axion dynamics in the early Universe has led us ...
In the framework where the strong coupling is dynamical, the QCD sector may confine at a much higher...
In the framework where the strong coupling is dynamical, the QCD sector may confine at a much higher...
The existence of dark matter is a well established fact both due to galaxy rotation curves and also ...
The string axion may provide the most attractive solution to the strong CP problem in QCD. However, ...
We study the cosmological evolution of the QCD axion coupled to hidden photons. For a moderately str...
The QCD axion is a good dark matter candidate. The observed dark matter abundance can arise from mis...
The Peccei-Quinn mechanism presents a neat solution to the strong CPproblem. As a by-product, it pro...
We present a new mechanism to produce the dark photon (γ′) in the early Universe with the help of th...
AbstractThe string axion may provide the most attractive solution to the strong CP problem in QCD. H...
The Peccei-Quinn mechanism presents a neat solution to the strong CP problem. As a by-product, it pr...
A stronger QCD in the early Universe renders the axion heavy, and thus can suppress the isocurvature...
We present a new mechanism to deplete the energy density of the QCD axion, making decay constants as...
We propose a new mechanism to suppress the axion isocurvature perturbation, while producing the righ...
If dark matter is composed of axions, then axion stars form in the cores of dark matter halos. These...
Abstract Ignorance of the initial condition for the axion dynamics in the early Universe has led us ...
In the framework where the strong coupling is dynamical, the QCD sector may confine at a much higher...
In the framework where the strong coupling is dynamical, the QCD sector may confine at a much higher...
The existence of dark matter is a well established fact both due to galaxy rotation curves and also ...
The string axion may provide the most attractive solution to the strong CP problem in QCD. However, ...
We study the cosmological evolution of the QCD axion coupled to hidden photons. For a moderately str...
The QCD axion is a good dark matter candidate. The observed dark matter abundance can arise from mis...
The Peccei-Quinn mechanism presents a neat solution to the strong CPproblem. As a by-product, it pro...
We present a new mechanism to produce the dark photon (γ′) in the early Universe with the help of th...
AbstractThe string axion may provide the most attractive solution to the strong CP problem in QCD. H...
The Peccei-Quinn mechanism presents a neat solution to the strong CP problem. As a by-product, it pr...
A stronger QCD in the early Universe renders the axion heavy, and thus can suppress the isocurvature...