We conduct large scale numerical simulations of gravitational wave production at a first-order vacuum phase transition. We find a power law for the gravitational wave power spectrum at high wave number which falls off as k−1.5 rather than the k−1 produced by the envelope approximation. The peak of the power spectrum is shifted to slightly lower wave numbers from that of the envelope approximation. The envelope approximation reproduces our results for the peak power less well, agreeing only to within an order of magnitude. After the bubbles finish colliding, the scalar field oscillates around the true vacuum. An additional feature is produced in the UV of the gravitational wave power spectrum, and this continues to grow linearly until the en...
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 present results from large-scale numerical simulations of a first order thermal phase transition ...
We conduct large scale numerical simulations of gravitational wave production at a first-order vacuu...
We conduct large scale numerical simulations of gravitational wave production at a first-order vacuu...
In a vacuum first-order phase transition, gravitational waves are generated from collision of bubble...
We present details of numerical simulations of the gravitational radiation produced by a first order...
We study the gravitational wave (GW) production in extremely strong first order phase transitions wh...
We comprehensively study the effects of bubble wall thickness and speed on the gravitational wave em...
We comprehensively study the effects of bubble wall thickness and speed on the gravitational wave em...
We study production of gravitational waves (GWs) in strongly supercooled cosmological phase transiti...
We investigate the gravitational wave spectrum resulted from the cosmological first-order phase tran...
We re-examine the production of gravitational waves by bubble collisions during a first-order phase ...
We present results from large-scale numerical simulations of a first order thermal phase transition ...
We comprehensively study the effects of bubble wall thickness and speed on the gravitational wave em...
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 present results from large-scale numerical simulations of a first order thermal phase transition ...
We conduct large scale numerical simulations of gravitational wave production at a first-order vacuu...
We conduct large scale numerical simulations of gravitational wave production at a first-order vacuu...
In a vacuum first-order phase transition, gravitational waves are generated from collision of bubble...
We present details of numerical simulations of the gravitational radiation produced by a first order...
We study the gravitational wave (GW) production in extremely strong first order phase transitions wh...
We comprehensively study the effects of bubble wall thickness and speed on the gravitational wave em...
We comprehensively study the effects of bubble wall thickness and speed on the gravitational wave em...
We study production of gravitational waves (GWs) in strongly supercooled cosmological phase transiti...
We investigate the gravitational wave spectrum resulted from the cosmological first-order phase tran...
We re-examine the production of gravitational waves by bubble collisions during a first-order phase ...
We present results from large-scale numerical simulations of a first order thermal phase transition ...
We comprehensively study the effects of bubble wall thickness and speed on the gravitational wave em...
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 present results from large-scale numerical simulations of a first order thermal phase transition ...