Many models of composite dark matter feature a first-order confinement transition in the early Universe, which would produce a stochastic background of gravitational waves that will be searched for by future gravitationalwave observatories. We present work in progress using lattice field theory to predict the properties of such first-order transitions. Targeting SU(N) Yang– Mills theories, this work employs the Logarithmic Linear Relaxation (LLR) density of states algorithm to avoid super-critical slowing down at the transition
I present first results from ongoing lattice investigations into the finite-temperature dynamics of ...
We pave the way for future gravitational-wave detection experiments, such as the Big Bang Observer a...
Abstract We explore the confinement-deconfinement phase transition (PT) of the first order (FO) aris...
Many models of composite dark matter feature a first-order confinement transition in the early Unive...
Many models of composite dark matter feature a first-order confinement transition in the early Unive...
We present ongoing investigations of the first-order confinement transition of a composite dark matt...
We present ongoing investigations of the first-order confinement transition of a composite dark matt...
Extensions of the standard model that lead to first-order phase transitions in the early universe ca...
Extensions of the standard model that lead to first-order phase transitions in the early universe ca...
Extensions of the standard model that lead to first-order phase transitions in the early universe ca...
Extensions of the standard model that lead to first-order phase transitions in the early universe ca...
We pave the way for future gravitational-wave detection experiments, such as the big bang observer a...
We pave the way for future gravitational-wave detection experiments, such as the big bang observer a...
We discuss the stochastic gravitational-wave spectrum from dark confinement and chiral phase transit...
We discuss the stochastic gravitational-wave spectrum from dark confinement and chiral phase transit...
I present first results from ongoing lattice investigations into the finite-temperature dynamics of ...
We pave the way for future gravitational-wave detection experiments, such as the Big Bang Observer a...
Abstract We explore the confinement-deconfinement phase transition (PT) of the first order (FO) aris...
Many models of composite dark matter feature a first-order confinement transition in the early Unive...
Many models of composite dark matter feature a first-order confinement transition in the early Unive...
We present ongoing investigations of the first-order confinement transition of a composite dark matt...
We present ongoing investigations of the first-order confinement transition of a composite dark matt...
Extensions of the standard model that lead to first-order phase transitions in the early universe ca...
Extensions of the standard model that lead to first-order phase transitions in the early universe ca...
Extensions of the standard model that lead to first-order phase transitions in the early universe ca...
Extensions of the standard model that lead to first-order phase transitions in the early universe ca...
We pave the way for future gravitational-wave detection experiments, such as the big bang observer a...
We pave the way for future gravitational-wave detection experiments, such as the big bang observer a...
We discuss the stochastic gravitational-wave spectrum from dark confinement and chiral phase transit...
We discuss the stochastic gravitational-wave spectrum from dark confinement and chiral phase transit...
I present first results from ongoing lattice investigations into the finite-temperature dynamics of ...
We pave the way for future gravitational-wave detection experiments, such as the Big Bang Observer a...
Abstract We explore the confinement-deconfinement phase transition (PT) of the first order (FO) aris...