The adiabatic regularization method was originally proposed by Parker and Fulling to renormalize the energy-momentum tensor of scalar fields in expanding universes. It can be extended to renormalize the electric current induced by quantized scalar fields in a time-varying electric background. This can be done in a way consistent with gravity if the vector potential is considered as a variable of adiabatic order one. Assuming this, we further extend the method to deal with Dirac fields in four spacetime dimensions. This requires a self-consistent ansatz for the adiabatic expansion, in presence of a prescribed time-dependent electric field, which is different from the conventional expansion used for scalar fields. Our proposal is consistent, ...
We have obtained nonperturbative one-loop expressions for the mean-energy-momentum tensor and curren...
We propose a new scheme to regularize the stress-energy tensor and the two-point function of free qu...
We have obtained nonperturbative one-loop expressions for the mean-energy-momentum tensor and curren...
We introduce an iterative method to univocally determine the adiabatic expansion of the modes of Dir...
We introduce an iterative method to univocally determine the adiabatic expansion of the modes of Dir...
We introduce an iterative method to univocally determine the adiabatic expansion of the modes of Dir...
We extend the adiabatic regularization method to spin-1/2 fields. The ansatz for the adiabatic expan...
The extension of the adiabatic regularization method to spin-1/2 fields requires a self-consistent a...
The adiabatic regularization method was designed by L. Parker [1] for scalar fields in order to to s...
We extend the adiabatic regularization method to spin-1/2 fields. The ansatz for the adiabatic expan...
We extend the adiabatic regularization method to spin-1/2 fields. The ansatz for the adiabatic expan...
The renormalization of a scalar field theory with a quartic self-coupling (a Robertson-Walker spacet...
We examine the relationship between three approaches (Hadamard, DeWitt-Schwinger and adiabatic) to t...
Nonperturbative methods have been well developed for QED with the so-called t-electric potential ste...
We extend the method of adiabatic regularization by introducing an arbitrary parameter $\mu$ for a s...
We have obtained nonperturbative one-loop expressions for the mean-energy-momentum tensor and curren...
We propose a new scheme to regularize the stress-energy tensor and the two-point function of free qu...
We have obtained nonperturbative one-loop expressions for the mean-energy-momentum tensor and curren...
We introduce an iterative method to univocally determine the adiabatic expansion of the modes of Dir...
We introduce an iterative method to univocally determine the adiabatic expansion of the modes of Dir...
We introduce an iterative method to univocally determine the adiabatic expansion of the modes of Dir...
We extend the adiabatic regularization method to spin-1/2 fields. The ansatz for the adiabatic expan...
The extension of the adiabatic regularization method to spin-1/2 fields requires a self-consistent a...
The adiabatic regularization method was designed by L. Parker [1] for scalar fields in order to to s...
We extend the adiabatic regularization method to spin-1/2 fields. The ansatz for the adiabatic expan...
We extend the adiabatic regularization method to spin-1/2 fields. The ansatz for the adiabatic expan...
The renormalization of a scalar field theory with a quartic self-coupling (a Robertson-Walker spacet...
We examine the relationship between three approaches (Hadamard, DeWitt-Schwinger and adiabatic) to t...
Nonperturbative methods have been well developed for QED with the so-called t-electric potential ste...
We extend the method of adiabatic regularization by introducing an arbitrary parameter $\mu$ for a s...
We have obtained nonperturbative one-loop expressions for the mean-energy-momentum tensor and curren...
We propose a new scheme to regularize the stress-energy tensor and the two-point function of free qu...
We have obtained nonperturbative one-loop expressions for the mean-energy-momentum tensor and curren...