All-loop order critical exponents for massless scalar field theory with Lorentz violation in the BPHZ method
arXiv:1503.00896 · doi:10.1142/S0217979215502598
Abstract
We compute analytically the all-loop level critical exponents for a massless thermal Lorentz-violating O() self-interacting scalar field theory. For that, we evaluate, firstly explicitly up to next-to-leading order and later in a proof by induction up to any loop level, the respective -function and anomalous dimensions in a theory renormalized in the massless BPHZ method, where a reduced set of Feynman diagrams to be calculated is needed. We investigate the effect of the Lorentz violation in the outcome for the critical exponents and present the corresponding mathematical explanation and physical interpretation.
15 pages, 15 figures
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- Unconventional minimal subtraction and Callan-Symanzik methods for Lorentz-violating scalar field theories at all loop orders
- Probing the two-scale-factor universality hypothesis by exact rotation symmetry-breaking mechanism