In this work, we present a lattice study of an axion - dark photon system in the early Universe and show that the stochastic gravitational wave (GW) background produced by this system may be probed by future GW experiments across a vast range of frequencies. The numerical simulation on the lattice allows us to take into account non-linear backreaction effects and enables us to accurately predict the final relic abundance of the axion or axion-like particle (ALP) as well as its inhomogeneities, and gives a more precise prediction of the GW spectrum. Importantly, we find that the GW spectrum has more power at high momenta due to $2\rightarrow1$ processes. Furthermore, we find the degree of polarization of the peak of the GW spectrum ...
We study the problem of axion-photon coupling in the magnetic field influenced by gravitational radi...
In this thesis we investigate the possibility that gravitational waves emitted from a first-order p...
In this paper, we consider dynamical Chern–Simons gravity with the identification of the scalar fiel...
Gravitational waves provide a novel way to probe axions or axion-like particles coupled to a dark ph...
Conventional approaches to probing axions and axion-like particles (ALPs) typically rely on a coupli...
Abstract An axion rotating in field space can produce dark photo...
Axion-like particles (ALP) are appealing candidates for dark matter if produced non-thermally via th...
Abstract Conventional approaches to probing axions and axion-like particles (ALPs) typically rely on...
In the framework of axion-gauge field models, primordial gravitational wave perturbations could be g...
Abstract Rotations of an axion field in field space provide a natural origin fo...
The first two decades of this century mark the beginning of the precision cosmologyand astrophysics ...
If the Peccei-Quinn symmetry associated to an axion has ever been restored after inflation, axion st...
Rotations of an axion field in field space provide a natural origin for an era of kination dominatio...
We discuss the stochastic gravitational-wave spectrum from dark confinement and chiral phase transit...
This thesis uses theoretical studies, and numerical simulations to provide results of the experiment...
We study the problem of axion-photon coupling in the magnetic field influenced by gravitational radi...
In this thesis we investigate the possibility that gravitational waves emitted from a first-order p...
In this paper, we consider dynamical Chern–Simons gravity with the identification of the scalar fiel...
Gravitational waves provide a novel way to probe axions or axion-like particles coupled to a dark ph...
Conventional approaches to probing axions and axion-like particles (ALPs) typically rely on a coupli...
Abstract An axion rotating in field space can produce dark photo...
Axion-like particles (ALP) are appealing candidates for dark matter if produced non-thermally via th...
Abstract Conventional approaches to probing axions and axion-like particles (ALPs) typically rely on...
In the framework of axion-gauge field models, primordial gravitational wave perturbations could be g...
Abstract Rotations of an axion field in field space provide a natural origin fo...
The first two decades of this century mark the beginning of the precision cosmologyand astrophysics ...
If the Peccei-Quinn symmetry associated to an axion has ever been restored after inflation, axion st...
Rotations of an axion field in field space provide a natural origin for an era of kination dominatio...
We discuss the stochastic gravitational-wave spectrum from dark confinement and chiral phase transit...
This thesis uses theoretical studies, and numerical simulations to provide results of the experiment...
We study the problem of axion-photon coupling in the magnetic field influenced by gravitational radi...
In this thesis we investigate the possibility that gravitational waves emitted from a first-order p...
In this paper, we consider dynamical Chern–Simons gravity with the identification of the scalar fiel...