Abstract We consider quantum gravitational corrections to Maxwell’s equations on flat space background. Although the vacuum polarization is highly gauge dependent, we explicitly show that this gauge dependence is canceled by contributions from the source which disturbs the effective field and the observer who measures it. Our final result is a gauge independent, real and causal effective field equation that can be used in the same way as the classical Maxwell equation
The effect of gravitational tidal forces on renormalized quantum fields propagating in curved spacet...
It is expected that the quantum nature of spacetime leaves its imprint in all semiclassical gravitat...
We study one loop quantum gravitational corrections to the long range force induced by the exchange ...
We derive the leading quantum corrections to the gravitational potentials in a de Sitter background,...
We show that a large class of null electromagnetic fields are immune to any modifications of Maxwell...
The interaction due to quantum gravitational vacuum fluctuations between a gravitationally polarizab...
Considering the interactions incorporating the vacuum polarization effects in curved backgrounds, th...
Abstract. Using the Pauli-Villars regularization and arguments from convex analysis, we construct so...
In this short paper we investigate quantum gravitational effects on Einstein’s equations using Effec...
We consider the gravitational correction to (electronic) vacuum polarization in the presence of a gr...
We employ the graviton self-energy induced by a massless, minimally coupled (MMC) scalar on de Sitte...
We employ the graviton self-energy induced by a massless, minimally coupled (MMC) scalar on de Sitte...
We study one loop quantum gravitational corrections to the long range force induced by the exchange ...
We study one loop quantum gravitational corrections to the long range force induced by the exchange ...
We employ the graviton self-energy induced by a massless, minimally coupled (MMC) scalar on de Sitte...
The effect of gravitational tidal forces on renormalized quantum fields propagating in curved spacet...
It is expected that the quantum nature of spacetime leaves its imprint in all semiclassical gravitat...
We study one loop quantum gravitational corrections to the long range force induced by the exchange ...
We derive the leading quantum corrections to the gravitational potentials in a de Sitter background,...
We show that a large class of null electromagnetic fields are immune to any modifications of Maxwell...
The interaction due to quantum gravitational vacuum fluctuations between a gravitationally polarizab...
Considering the interactions incorporating the vacuum polarization effects in curved backgrounds, th...
Abstract. Using the Pauli-Villars regularization and arguments from convex analysis, we construct so...
In this short paper we investigate quantum gravitational effects on Einstein’s equations using Effec...
We consider the gravitational correction to (electronic) vacuum polarization in the presence of a gr...
We employ the graviton self-energy induced by a massless, minimally coupled (MMC) scalar on de Sitte...
We employ the graviton self-energy induced by a massless, minimally coupled (MMC) scalar on de Sitte...
We study one loop quantum gravitational corrections to the long range force induced by the exchange ...
We study one loop quantum gravitational corrections to the long range force induced by the exchange ...
We employ the graviton self-energy induced by a massless, minimally coupled (MMC) scalar on de Sitte...
The effect of gravitational tidal forces on renormalized quantum fields propagating in curved spacet...
It is expected that the quantum nature of spacetime leaves its imprint in all semiclassical gravitat...
We study one loop quantum gravitational corrections to the long range force induced by the exchange ...