We consider QED in a constant axial vector background (AEther). Further Lorentz invariance violations (LIV) might occur owing to radiative corrections. The phenomenology of this model is studied, clarifying issues related to the various regularizations employed, with a particular emphasis on the induced photon mass. To this concern, it is shown that in the presence of LIV dimensional regularization may produce a radiatively induced finite photon mass. The possible physical role of the large momentum cutoff is elucidated and the finite temperature radiative corrections are evaluated. Finally, various experimental bounds on the parameters of the model are discussed
AbstractThe quantization of the electromagnetic sector of the Myers–Pospelov model coupled to standa...
In this work we report new results concerning the question of dynamical mass generation in the Loren...
Latex file, 19 pages, no figures, includes PACS numbersIn this work we report new results concerning...
We consider QED in a constant axial vector background (AEther). Further Lorentz invariance violation...
We consider QED in a constant axial vector background (AEther). Further Lorentz invariance violation...
We show for the first time that the induced parity--even Lorentz invariance violation can be unambig...
We examine the radiative corrections to an extension of the standard model containing a Lorentz-viol...
We show for the first time that the induced parity--even Lorentz invariance violation can be unambig...
We show for the first time that the induced parity--even Lorentz invariance violation can be unambig...
AbstractWe show for the first time that the induced parity-even Lorentz invariance violation can be ...
none5noneJ. Alfaro; A.A. Andrianov; M. Cambiaso; P. Giacconi; Soldati RJ. Alfaro; A.A. Andrianov; M....
We obtain the induced Lorentz- and (Formula presented)-violating term in QED at finite temperature u...
AbstractWe show for the first time that the induced parity-even Lorentz invariance violation can be ...
We consider an extended QED with the addition of a dimension-five Lorentz-breaking coupling between ...
7 pages, LaTex file, 2 references addedWe rediscuss the recent controversy on a possible Chern-Simon...
AbstractThe quantization of the electromagnetic sector of the Myers–Pospelov model coupled to standa...
In this work we report new results concerning the question of dynamical mass generation in the Loren...
Latex file, 19 pages, no figures, includes PACS numbersIn this work we report new results concerning...
We consider QED in a constant axial vector background (AEther). Further Lorentz invariance violation...
We consider QED in a constant axial vector background (AEther). Further Lorentz invariance violation...
We show for the first time that the induced parity--even Lorentz invariance violation can be unambig...
We examine the radiative corrections to an extension of the standard model containing a Lorentz-viol...
We show for the first time that the induced parity--even Lorentz invariance violation can be unambig...
We show for the first time that the induced parity--even Lorentz invariance violation can be unambig...
AbstractWe show for the first time that the induced parity-even Lorentz invariance violation can be ...
none5noneJ. Alfaro; A.A. Andrianov; M. Cambiaso; P. Giacconi; Soldati RJ. Alfaro; A.A. Andrianov; M....
We obtain the induced Lorentz- and (Formula presented)-violating term in QED at finite temperature u...
AbstractWe show for the first time that the induced parity-even Lorentz invariance violation can be ...
We consider an extended QED with the addition of a dimension-five Lorentz-breaking coupling between ...
7 pages, LaTex file, 2 references addedWe rediscuss the recent controversy on a possible Chern-Simon...
AbstractThe quantization of the electromagnetic sector of the Myers–Pospelov model coupled to standa...
In this work we report new results concerning the question of dynamical mass generation in the Loren...
Latex file, 19 pages, no figures, includes PACS numbersIn this work we report new results concerning...