The breaking of an approximate discrete symmetry, the final stages of a first order phase transition, or a postinflationary biased probability distribution for scalar fields are possible cosmological scenarios characterized by the presence of unstable domain wall networks. Combining analytical and numerical techniques, we show that the nonspherical collapse of these domains can be a powerful source of gravitational waves. We compute their contribution to the stochastic background of gravitational radiation and explore their observability by present and future gravitational wave detectors
We discuss the gravitational wave spectrum produced by first-order phase transitions seeded by domai...
We argue that gravitational wave signals due to collisions of ultra-relativistic bubble walls may be...
We argue that gravitational wave signals due to collisions of ultra-relativistic bubble walls may be...
The breaking of an approximate discrete symmetry, the final stages of a first order phase transition...
The effective potential for the Standard Model Higgs field allows two quasi-degenerate vacua; one is...
The effective potential for the Standard Model Higgs field allows two quasi-degenerate vacua; one is...
In this contribution, we discuss the cosmological scenario where unstable domain walls are formed in...
In this contribution, we discuss the cosmological scenario where unstable domain walls are formed in...
In a vacuum first-order phase transition, gravitational waves are generated from collision of bubble...
We conduct large scale numerical simulations of gravitational wave production at a first-order vacuu...
In this contribution, we discuss the cosmological scenario where unstable domain walls are formed in...
In this contribution, we discuss the cosmological scenario where unstable domain walls are formed in...
In this contribution, we discuss the cosmological scenario where unstable domain walls are formed in...
International audienceCosmic domain walls are harmless, provided that their tension decreases with e...
We study production of gravitational waves (GWs) in strongly supercooled cosmological phase transiti...
We discuss the gravitational wave spectrum produced by first-order phase transitions seeded by domai...
We argue that gravitational wave signals due to collisions of ultra-relativistic bubble walls may be...
We argue that gravitational wave signals due to collisions of ultra-relativistic bubble walls may be...
The breaking of an approximate discrete symmetry, the final stages of a first order phase transition...
The effective potential for the Standard Model Higgs field allows two quasi-degenerate vacua; one is...
The effective potential for the Standard Model Higgs field allows two quasi-degenerate vacua; one is...
In this contribution, we discuss the cosmological scenario where unstable domain walls are formed in...
In this contribution, we discuss the cosmological scenario where unstable domain walls are formed in...
In a vacuum first-order phase transition, gravitational waves are generated from collision of bubble...
We conduct large scale numerical simulations of gravitational wave production at a first-order vacuu...
In this contribution, we discuss the cosmological scenario where unstable domain walls are formed in...
In this contribution, we discuss the cosmological scenario where unstable domain walls are formed in...
In this contribution, we discuss the cosmological scenario where unstable domain walls are formed in...
International audienceCosmic domain walls are harmless, provided that their tension decreases with e...
We study production of gravitational waves (GWs) in strongly supercooled cosmological phase transiti...
We discuss the gravitational wave spectrum produced by first-order phase transitions seeded by domai...
We argue that gravitational wave signals due to collisions of ultra-relativistic bubble walls may be...
We argue that gravitational wave signals due to collisions of ultra-relativistic bubble walls may be...