Rotations of an axion field in field space provide a natural origin for an era of kination domination, where the energy density is dominated by the kinetic term of the axion field, preceded by an early era of matter domination. Remarkably, no entropy is produced at the end of matter domination and hence these eras of matter and kination domination may occur even after Big Bang Nucleosynthesis. We derive constraints on these eras from both the cosmic microwave background and Big Bang Nucleosynthesis. We investigate how this cosmological scenario affects the spectrum of possible primordial gravitational waves and find that the spectrum features a triangular peak. We discuss how future observations of gravitational waves can probe the viable p...
A scenario where axions provide the dark matter in the universe is considered. Fluctuations in the a...
We derive a general master equation relating the gravitational-wave observables r and Omega_gw(f). H...
Abstract In addition to spectacular signatures such as black hole superradiance and the rotation of ...
Abstract Rotations of an axion field in field space provide a natural origin fo...
The primordial irreducible gravitational-wave background due to quantum vacuum tensor fluctuations...
Abstract An axion rotating in field space can produce dark photo...
Gravitational waves provide a novel way to probe axions or axion-like particles coupled to a dark ph...
Cosmology and particle physics are deeply interrelated. Among the common problems are dark energy, d...
Generating axion dark matter through the kinetic misalignment mechanism implies the generation of la...
The main mechanism responsible for Axion-Like-Particle (ALP) production in the early universe is the...
The main mechanism responsible for Axion-Like-Particle (ALP) production in the early universe is the...
We evaluate our capability to constrain the abundance of primordial tensor perturbations (primordial...
We review the basic elements of big bang nucleosythesis (BBN) and how a comparison of predicted ligh...
This thesis is based on two main projects completed during my graduate studies. The first project co...
In the framework of axion-gauge field models, primordial gravitational wave perturbations could be g...
A scenario where axions provide the dark matter in the universe is considered. Fluctuations in the a...
We derive a general master equation relating the gravitational-wave observables r and Omega_gw(f). H...
Abstract In addition to spectacular signatures such as black hole superradiance and the rotation of ...
Abstract Rotations of an axion field in field space provide a natural origin fo...
The primordial irreducible gravitational-wave background due to quantum vacuum tensor fluctuations...
Abstract An axion rotating in field space can produce dark photo...
Gravitational waves provide a novel way to probe axions or axion-like particles coupled to a dark ph...
Cosmology and particle physics are deeply interrelated. Among the common problems are dark energy, d...
Generating axion dark matter through the kinetic misalignment mechanism implies the generation of la...
The main mechanism responsible for Axion-Like-Particle (ALP) production in the early universe is the...
The main mechanism responsible for Axion-Like-Particle (ALP) production in the early universe is the...
We evaluate our capability to constrain the abundance of primordial tensor perturbations (primordial...
We review the basic elements of big bang nucleosythesis (BBN) and how a comparison of predicted ligh...
This thesis is based on two main projects completed during my graduate studies. The first project co...
In the framework of axion-gauge field models, primordial gravitational wave perturbations could be g...
A scenario where axions provide the dark matter in the universe is considered. Fluctuations in the a...
We derive a general master equation relating the gravitational-wave observables r and Omega_gw(f). H...
Abstract In addition to spectacular signatures such as black hole superradiance and the rotation of ...