Nucleation rates in flat and curved space


Autoria(s): Garriga Torres, Jaume
Contribuinte(s)

Universitat de Barcelona

Data(s)

11/05/2010

Resumo

Nucleation rates for tunneling processes in Minkowski and de Sitter space are investigated, taking into account one loop prefactors. In particular, we consider the creation of membranes by an antisymmetric tensor field, analogous to Schwinger pair production. This can be viewed as a model for the decay of a false (or true) vacuum at zero temperature in the thin wall limit. Also considered is the spontaneous nucleation of strings, domain walls, and monopoles during inflation. The instantons for these processes are spherical world sheets or world lines embedded in flat or de Sitter backgrounds. We find the contribution of such instantons to the semiclassical partition function, including the one loop corrections due to small fluctuations around the spherical world sheet. We suggest a prescription for obtaining, from the partition function, the distribution of objects nucleated during inflation. This can be seen as an extension of the usual formula, valid in flat space, according to which the nucleation rate is twice the imaginary part of the free energy. For the case of pair production, the results reproduce those that can be obtained using second quantization methods, confirming the validity of instanton techniques in de Sitter space. Throughout the paper, both the gravitational field and the antisymmetric tensor field are assumed external.

Identificador

http://hdl.handle.net/2445/12334

Idioma(s)

eng

Publicador

The American Physical Society

Direitos

(c) The American Physical Society, 1994

info:eu-repo/semantics/openAccess

Palavras-Chave #Matèria interstel·lar #Relativitat (Física) #Teoria de camps (Física) #Particles (Nuclear physics) #Espai i temps #Instantons #Interstellar matter #Relativity (Physics) #Field theory (Physics) #Particles (Nuclear physics) #Space and time #Instantons
Tipo

info:eu-repo/semantics/article