Here we present a possible way to relate the method of covariantizing the gauge-dependent pole and the negative dimensional integration method for computing Feynman integrals pertinent to the light-cone gauge fields. Both techniques are applicable to the algebraic light-cone gauge and dispense with prescriptions to treat the characteristic poles
We analyze the residual gauge freedom in light-cone electromagnetism in four dimensions. The standar...
The well-known D-dimensional Feynman integrals were shown, by Halliday and Ricotta, to be capable of...
A thorough investigation of light-cone properties which are characteristic for higher dimensions is ...
Feynman integrals in the physical light-cone gauge are more difficult to solve than their covariant ...
Feynman integrals in the physical light-cone gauge are more difficult to solve than their covariant ...
We apply the negative dimensional integration method (NDIM) to three outstand-ing gauges: Feynman, l...
Perturbative quantum gauge field theory as seen within the perspective of physical gauge choices suc...
We apply the negative dimensional integration method (NDIM) to three outstanding gauges: Feynman, li...
Making sure that causality be preserved by means of ''covariantizing'' the gauge-dependent singulari...
The only calculations performed beyond one-loop level in the light-cone gauge make use of the Mandel...
We present a prescription for light-cone gauge singularities which embeds in it causality and show t...
Feynman diagrams are the best tool we have to study perturbative quantum field theory. For this very...
Uma forma alternativa no tratamento dos pólos do gauge do cone de luz do tipo (q.n)-£ é estudada, e ...
The negative-dimensional integration method is a technique which can be applied, with success, in us...
Applying the principle of analytic extension for generalized functions we derive causal propagators ...
We analyze the residual gauge freedom in light-cone electromagnetism in four dimensions. The standar...
The well-known D-dimensional Feynman integrals were shown, by Halliday and Ricotta, to be capable of...
A thorough investigation of light-cone properties which are characteristic for higher dimensions is ...
Feynman integrals in the physical light-cone gauge are more difficult to solve than their covariant ...
Feynman integrals in the physical light-cone gauge are more difficult to solve than their covariant ...
We apply the negative dimensional integration method (NDIM) to three outstand-ing gauges: Feynman, l...
Perturbative quantum gauge field theory as seen within the perspective of physical gauge choices suc...
We apply the negative dimensional integration method (NDIM) to three outstanding gauges: Feynman, li...
Making sure that causality be preserved by means of ''covariantizing'' the gauge-dependent singulari...
The only calculations performed beyond one-loop level in the light-cone gauge make use of the Mandel...
We present a prescription for light-cone gauge singularities which embeds in it causality and show t...
Feynman diagrams are the best tool we have to study perturbative quantum field theory. For this very...
Uma forma alternativa no tratamento dos pólos do gauge do cone de luz do tipo (q.n)-£ é estudada, e ...
The negative-dimensional integration method is a technique which can be applied, with success, in us...
Applying the principle of analytic extension for generalized functions we derive causal propagators ...
We analyze the residual gauge freedom in light-cone electromagnetism in four dimensions. The standar...
The well-known D-dimensional Feynman integrals were shown, by Halliday and Ricotta, to be capable of...
A thorough investigation of light-cone properties which are characteristic for higher dimensions is ...