The baryon asymmetry, together with a dark matter asymmetry, may be produced during a first order phase transition in a generative sector. We study the possibility of a gravitational wave signal in a model realising such a scenario. We identify areas of parameter space with strong phase transitions which can be probed by future, space based, gravitational wave detectors. Other signals of this scenario include collider signatures of a $Z'$, DM self interactions, a contribution to $\Delta N_{\rm eff}$ and nuclear recoils at direct detection experiments
International audienceWe propose a novel scenario of dark matter production naturally connected with...
We model a dark sector as a strongly coupled Conformal Field Theory with deformations that confines ...
Gravitational waves are generated during first-order phase transitions, either by turbulence or by b...
The baryon asymmetry, together with a dark matter asymmetry, may be produced during a first order ph...
We consider the possibility of a gravitational wave signal in an asymmetric dark matter model. In th...
In this work, we show that a large class of models with a composite dark sector undergo a strong fir...
Among various scenarios of baryon asymmetry of the Universe, electroweak baryogenesis is directly co...
Abstract In anticipation of upcoming gravitational wave experiments, we provide a comprehensive over...
An introduction to gravitational waves from phase transitions is given, then specific hidden sector ...
A rather minimal possibility is that dark matter consists of the gauge bosons of a spontaneously bro...
We propose a novel mechanism for production of baryonic asymmetry in the early Universe. The mechani...
We study the gravitational-wave (GW) signature of first-order chiral phase transitions (chi PTs) in ...
Abstract We consider a standard model extension equipped with a dark sector where the U(1) X Abelian...
The recent claim by the NANOGrav collaboration of a possible detection of an isotropic gravitational...
We discuss gravitational wave signal from the strongly first order electroweak phase transition in t...
International audienceWe propose a novel scenario of dark matter production naturally connected with...
We model a dark sector as a strongly coupled Conformal Field Theory with deformations that confines ...
Gravitational waves are generated during first-order phase transitions, either by turbulence or by b...
The baryon asymmetry, together with a dark matter asymmetry, may be produced during a first order ph...
We consider the possibility of a gravitational wave signal in an asymmetric dark matter model. In th...
In this work, we show that a large class of models with a composite dark sector undergo a strong fir...
Among various scenarios of baryon asymmetry of the Universe, electroweak baryogenesis is directly co...
Abstract In anticipation of upcoming gravitational wave experiments, we provide a comprehensive over...
An introduction to gravitational waves from phase transitions is given, then specific hidden sector ...
A rather minimal possibility is that dark matter consists of the gauge bosons of a spontaneously bro...
We propose a novel mechanism for production of baryonic asymmetry in the early Universe. The mechani...
We study the gravitational-wave (GW) signature of first-order chiral phase transitions (chi PTs) in ...
Abstract We consider a standard model extension equipped with a dark sector where the U(1) X Abelian...
The recent claim by the NANOGrav collaboration of a possible detection of an isotropic gravitational...
We discuss gravitational wave signal from the strongly first order electroweak phase transition in t...
International audienceWe propose a novel scenario of dark matter production naturally connected with...
We model a dark sector as a strongly coupled Conformal Field Theory with deformations that confines ...
Gravitational waves are generated during first-order phase transitions, either by turbulence or by b...