We study the effects of various phenomena which may have happened in the early universe on the spectrum of inflationary gravitational waves. The phenomena include phase transitions, entropy productions from non-relativistic matter, the production of dark radiation, and decoupling of dark matter/radiation from thermal bath. These events can create several characteristic signatures in the inflationary gravitational wave spectrum, which may be direct probes of the history of the early universe and the nature of high-energy physics
It is shown that space-based gravitational-wave detectors such as DECIGO and/or the Big Bang Observe...
Primordial Black Holes (PBH) could be the cold dark matter of the universe. They could have arisen f...
Primordial gravitational waves (PGW) produced during inflation span a large range of frequencies, ca...
AbstractWe investigate the gravitational wave background from a first order phase transition in a ma...
In this chapter we consider the issues of the origin and evolution of relic gravitational waves (GW)...
The production of a stochastic background of gravitational waves is a fundamental prediction of any ...
Large excursion of the inflaton field can trigger interesting dynamics. One important example is a f...
In this thesis, I will discuss two separate topics which are related to gravitational wave productio...
In this work, we investigate the effects of a geometrically generated early dark energy era on the e...
Though precise measurements of the cosmic microwave background establish inflation as the leading pa...
In this thesis we investigate the possibility that gravitational waves emitted from a first-order ph...
textGravitational waves are truly transparent to matter in the Universe and carry the information of...
textGravitational waves are truly transparent to matter in the Universe and carry the information of...
A cosmological gravitational wave background resulting from space-time quantum perturbations at ener...
Primordial Black Holes (PBH) could be the cold dark matter of the universe. They could have arisen f...
It is shown that space-based gravitational-wave detectors such as DECIGO and/or the Big Bang Observe...
Primordial Black Holes (PBH) could be the cold dark matter of the universe. They could have arisen f...
Primordial gravitational waves (PGW) produced during inflation span a large range of frequencies, ca...
AbstractWe investigate the gravitational wave background from a first order phase transition in a ma...
In this chapter we consider the issues of the origin and evolution of relic gravitational waves (GW)...
The production of a stochastic background of gravitational waves is a fundamental prediction of any ...
Large excursion of the inflaton field can trigger interesting dynamics. One important example is a f...
In this thesis, I will discuss two separate topics which are related to gravitational wave productio...
In this work, we investigate the effects of a geometrically generated early dark energy era on the e...
Though precise measurements of the cosmic microwave background establish inflation as the leading pa...
In this thesis we investigate the possibility that gravitational waves emitted from a first-order ph...
textGravitational waves are truly transparent to matter in the Universe and carry the information of...
textGravitational waves are truly transparent to matter in the Universe and carry the information of...
A cosmological gravitational wave background resulting from space-time quantum perturbations at ener...
Primordial Black Holes (PBH) could be the cold dark matter of the universe. They could have arisen f...
It is shown that space-based gravitational-wave detectors such as DECIGO and/or the Big Bang Observe...
Primordial Black Holes (PBH) could be the cold dark matter of the universe. They could have arisen f...
Primordial gravitational waves (PGW) produced during inflation span a large range of frequencies, ca...