We classify the unitary, renormalizable, Lorentz violating quantum field theories of interacting scalars and fermions, obtained improving the behavior of Feynman diagrams by means of higher space derivatives. Higher time derivatives are not generated by renormalization. Renormalizability is ensured by a "weighted power-counting" criterion. The theories contain a dimensionful parameter Lambda(L), yet a set of models are classically invariant under a weighted scale transformation, which is anomalous at the quantum level. Formulas for the weighted trace anomaly are derived. The renormalization-group properties are studied
We prove the renormalizability of various theories of classical gravity coupled with interacting qua...
AbstractIn this paper, we revisit the issue intensively studied in recent years on the generation of...
In this work, we employ renormalization group methods to study the general behavior of field theorie...
We study a class of Lorentz violating quantum field theories that contain higher space derivatives, ...
We classify the local, polynomial, unitary gauge theories that violate Lorentz symmetry explicitly a...
We study the possibility of constructing Lorentz-violating supersymmetric quantum field theories und...
Power-counting non-renormalizable theories should not be dismissed a priori as fundamentaltheories. ...
We study a QED extension that is unitary, CPT invariant, and super-renormalizable, but violates Lore...
We calculate the critical exponents for Lorentz-violating O(N) λφ4 scalar field theories by using tw...
We consider a theory of scalar and spinor fields, interacting through Yukawa and ϕ4 interactions, wi...
The renormalization in a Lorentz-breaking scalar-spinor higher-derivative model involving $$\phi ^4$...
Lorentz invariance is experimentally verified with a high degree of precision, so that to date it ap...
Recently, Hořava (Phys. Rev. D. 79, 084008, 2009) proposed a theory of gravity in 3+1 dimensions wit...
In this paper, we revisit the issue intensively studied in recent years on the generation of terms b...
In this work we evaluate analytically the ultraviolet divergences of Lorentz-violating massive O(N) ...
We prove the renormalizability of various theories of classical gravity coupled with interacting qua...
AbstractIn this paper, we revisit the issue intensively studied in recent years on the generation of...
In this work, we employ renormalization group methods to study the general behavior of field theorie...
We study a class of Lorentz violating quantum field theories that contain higher space derivatives, ...
We classify the local, polynomial, unitary gauge theories that violate Lorentz symmetry explicitly a...
We study the possibility of constructing Lorentz-violating supersymmetric quantum field theories und...
Power-counting non-renormalizable theories should not be dismissed a priori as fundamentaltheories. ...
We study a QED extension that is unitary, CPT invariant, and super-renormalizable, but violates Lore...
We calculate the critical exponents for Lorentz-violating O(N) λφ4 scalar field theories by using tw...
We consider a theory of scalar and spinor fields, interacting through Yukawa and ϕ4 interactions, wi...
The renormalization in a Lorentz-breaking scalar-spinor higher-derivative model involving $$\phi ^4$...
Lorentz invariance is experimentally verified with a high degree of precision, so that to date it ap...
Recently, Hořava (Phys. Rev. D. 79, 084008, 2009) proposed a theory of gravity in 3+1 dimensions wit...
In this paper, we revisit the issue intensively studied in recent years on the generation of terms b...
In this work we evaluate analytically the ultraviolet divergences of Lorentz-violating massive O(N) ...
We prove the renormalizability of various theories of classical gravity coupled with interacting qua...
AbstractIn this paper, we revisit the issue intensively studied in recent years on the generation of...
In this work, we employ renormalization group methods to study the general behavior of field theorie...