© 2019 authors. Published by the American Physical Society. We introduce a new picture of vacuum decay which, in contrast to existing semiclassical techniques, provides a real-time description and does not rely on classically forbidden tunneling paths. Using lattice simulations, we observe vacuum decay via bubble formation by generating realizations of vacuum fluctuations and evolving with the classical equations of motion. The decay rate obtained from an ensemble of simulations is in excellent agreement with existing techniques. Future applications include bubble correlation functions, fast decay rates, and decay of nonvacuum states
NOTE: This version contains an incorrect instance of the section "Visualizing the Decay", which form...
We consider the effect of inhomogeneities on the rate of false vacuum decay. Modelling the inhomogen...
NOTE: This version does not contain the section "Visualizing the Decay", which formulates and graphs...
We introduce a new picture of vacuum decay which, in contrast to existing semiclassical techniques, ...
We develop a new real-time approach to vacuum decay based on a reduction to a finite number of degre...
We investigate the role of nonperturbative, bubble-like inhomogeneities on the decay rate of false- ...
Analog condensed matter systems present an exciting opportunity to simulate early Universe models in...
Analog condensed matter systems present an exciting opportunity to simulate early Universe models in...
Analog condensed matter systems present an exciting opportunity to simulate early Universe models in...
The theory of false vacuum decay in a thermal system may have a cross-over from predominantly therma...
This talk reviews our recent work showing how tiny black holes can act as nucleation sites for the ...
We suggest a technique that explicitly accounts for the structure of an initial state of quantum fie...
We propose to test the concept of seeded vacuum decay in cosmology using a Bose-Einstein condensate ...
If a theory has more than one classically stable vacuum, quantum tunneling and thermal jumps make th...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2020 Tutor: J...
NOTE: This version contains an incorrect instance of the section "Visualizing the Decay", which form...
We consider the effect of inhomogeneities on the rate of false vacuum decay. Modelling the inhomogen...
NOTE: This version does not contain the section "Visualizing the Decay", which formulates and graphs...
We introduce a new picture of vacuum decay which, in contrast to existing semiclassical techniques, ...
We develop a new real-time approach to vacuum decay based on a reduction to a finite number of degre...
We investigate the role of nonperturbative, bubble-like inhomogeneities on the decay rate of false- ...
Analog condensed matter systems present an exciting opportunity to simulate early Universe models in...
Analog condensed matter systems present an exciting opportunity to simulate early Universe models in...
Analog condensed matter systems present an exciting opportunity to simulate early Universe models in...
The theory of false vacuum decay in a thermal system may have a cross-over from predominantly therma...
This talk reviews our recent work showing how tiny black holes can act as nucleation sites for the ...
We suggest a technique that explicitly accounts for the structure of an initial state of quantum fie...
We propose to test the concept of seeded vacuum decay in cosmology using a Bose-Einstein condensate ...
If a theory has more than one classically stable vacuum, quantum tunneling and thermal jumps make th...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2020 Tutor: J...
NOTE: This version contains an incorrect instance of the section "Visualizing the Decay", which form...
We consider the effect of inhomogeneities on the rate of false vacuum decay. Modelling the inhomogen...
NOTE: This version does not contain the section "Visualizing the Decay", which formulates and graphs...