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Doctoral Thesis
DOI
https://doi.org/10.11606/T.43.2013.tde-16102014-143540
Document
Author
Full name
João Bosco de Siqueira
E-mail
Institute/School/College
Knowledge Area
Date of Defense
Published
São Paulo, 2013
Supervisor
Committee
Brandt, Fernando Tadeu Caldeira (President)
Gomes, Marcelo Otavio Caminha
Malbouisson, Adolfo Pedro Carvalho
Santana, Ademir Eugenio de
Teotonio Sobrinho, Paulo
Title in Portuguese
Limite de altas temperaturas em presença de campos externos estáticos
Keywords in Portuguese
Método do campo fundo
Temperatura finita
Teoria de campos
Abstract in Portuguese
Investigamos certas propriedades físicas da teoria de campos a temperatura finita. Mostramos que, na presença de campos externos bosonicos, o limite de altas temperaturas das funções de Green pode ser obtido supondo que todas as componentes dos momentos externos sao nulas, para todas as funções de Green 1PI em ordem de um laco e em ordem de dois laços para a auto-energia. No contexto do método do campo de fundo, este resultado implica que a lagrangiana efetiva estática de um campo externo bosonico pode ser obtida calculando a pressão na presença de um campo externo independente do espaço-tempo, no limite de altas temperaturas. Aplicamos este resultado para obter a lagrangiana efetiva estática de um campo de Maxwell interagindo com um plasma da QED em ordem de dois laços. Obtivemos também a lagrangiana efetiva estática de um campo gravitacional interagindo com um campo escalar real livre, e com um plasma da QED em ordem de dois laços.
Title in English
High temperature limit in static background fields
Keywords in English
Background field method
Finite temperature field theory
Abstract in English
We have investigated some physical proprieties of nite temperature field theory. We have shown that, in the presence of an external bosonic field, the high temperature limit of the static Green's functions can be obtained assuming that all components of the external momenta are zero. This was shown to be the case for all 1PI Green's functions, at one-loop order, as well as for the self-energy, at two-loop order. In the context of the background field method, this result implies that the static efective Lagrangian of an external field can be obtained computing the pressure in the presence of an external field which is independent of the space-time, in the high temperature limit. We have applied this result in order to obtain the efective Lagrangian of an external Maxwell field interacting with a QED plasma at two-loop order. We have also obtained the efective Lagrangian of the gravitational field interacting with a free neutral scalar field, as well as with a QED plasma at two-loop order.
 
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tese.pdf (1.56 Mbytes)
Publishing Date
2014-10-17
 
WARNING: The material described below relates to works resulting from this thesis or dissertation. The contents of these works are the author's responsibility.
  • BRANDT, F., and SIQUEIRA, J. High temperature limit in static backgrounds [doi:10.1103/PhysRevD.86.105001]. Physical Review. D. Particles, Fields, Gravitation, and Cosmology [online], 2012, vol. 86, p. 105001.
  • BRANDT, F., and SIQUEIRA, J. Thermal effective Lagrangian of static gravitational fields [doi:10.1103/physrevd.85.067701]. Physical Review. D. Particles, Fields, Gravitation, and Cosmology [online], 2012, vol. 85, p. 067701.
  • BRANDT, F., FRENKEL, J., and SIQUEIRA, J. Nonanalyticity of the free energy in thermal field theory [doi:10.1103/PhysRevD.86.107701]. Physical Review. D. Particles, Fields, Gravitation, and Cosmology [online], 2012, vol. 86, p. 107701.
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