We study strongly supercooled cosmological phase transitions. We perform numerical lattice simulations of two-bubble collisions and demonstrate that, depending on the scalar potential, in the collision the field can either bounce to a false vacuum or remain oscillating around the true vacuum. We study if these cases can be distinguished from their gravitational wave signals and discuss the possibility of black hole formation in the bubble collisions.</p
We study the gravitational wave (GW) production in extremely strong first order phase transitions wh...
We estimate bubble-nucleation rates for cosmological phase transitions. We concentrate on the evalua...
Gravitational wave production from bubble collisions was calculated in the early nineties using nume...
We derive efficiency factors for the production of gravitational waves through bubble collisions and...
Many beyond the Standard Model theories include a first order phase transition in the early universe...
We study production of gravitational waves (GWs) in strongly supercooled cosmological phase transiti...
We study collisions between pairs of bubbles nucleated in an ambient false vacuum. For the first ti...
We comprehensively study the effects of bubble wall thickness and speed on the gravitational wave em...
We study scalar bubble collisions in first-order phase transitions focusing on the relativistic limi...
We study gravitational-wave production from bubble dynamics (bubble collisions and sound waves) duri...
We comprehensively study the effects of bubble wall thickness and speed on the gravitational wave em...
We study the gravitational wave (GW) production in extremely strong first order phase transitions wh...
We re-examine the production of gravitational waves by bubble collisions during a first-order phase ...
Strongly first-order phase transitions, i.e., those with a large order parameter, are characterized ...
Bubble collisions and defect formation in a damping environment (Melfo, Alejandra; Ferrera, Antonio...
We study the gravitational wave (GW) production in extremely strong first order phase transitions wh...
We estimate bubble-nucleation rates for cosmological phase transitions. We concentrate on the evalua...
Gravitational wave production from bubble collisions was calculated in the early nineties using nume...
We derive efficiency factors for the production of gravitational waves through bubble collisions and...
Many beyond the Standard Model theories include a first order phase transition in the early universe...
We study production of gravitational waves (GWs) in strongly supercooled cosmological phase transiti...
We study collisions between pairs of bubbles nucleated in an ambient false vacuum. For the first ti...
We comprehensively study the effects of bubble wall thickness and speed on the gravitational wave em...
We study scalar bubble collisions in first-order phase transitions focusing on the relativistic limi...
We study gravitational-wave production from bubble dynamics (bubble collisions and sound waves) duri...
We comprehensively study the effects of bubble wall thickness and speed on the gravitational wave em...
We study the gravitational wave (GW) production in extremely strong first order phase transitions wh...
We re-examine the production of gravitational waves by bubble collisions during a first-order phase ...
Strongly first-order phase transitions, i.e., those with a large order parameter, are characterized ...
Bubble collisions and defect formation in a damping environment (Melfo, Alejandra; Ferrera, Antonio...
We study the gravitational wave (GW) production in extremely strong first order phase transitions wh...
We estimate bubble-nucleation rates for cosmological phase transitions. We concentrate on the evalua...
Gravitational wave production from bubble collisions was calculated in the early nineties using nume...