Starting from the Heisenberg-Euler effective Lagrangian, we determine the photon current and photon polarization tensor in inhomogeneous, slowly varying electromagnetic fields. To this end, we consider background field configurations varying in both space and time, paying special attention to the tensor structure. As a main result, we obtain compact analytical expressions for the photon polarization tensor in realistic Gaussian laser pulses, as generated in the focal spots of high-intensity lasers. These expressions are of utmost importance for the investigation of quantum vacuum nonlinearities in realistic high-intensity laser experiments
The photon magnetic moment for radiation propagating in magnetized vacuum is defined as a pseudotens...
The scattering of high-power probe laser pulses by tightly focused ultra-strong laser pulses has bee...
A new explicit analytical form of the dispersion relation for photon propagation in the presence of...
Abstract: According to the theory of quantum electrodynamics, zero-point fluctuations of the vacuum ...
The photon polarization tensor is the central building block of an effective theory de-scription of ...
Using the quadratic expansion in the photon fields of Euler–Heisenberg (EH) non-linear electrodynami...
International audienceFrom an effective field theory of electromagnetism in vacuum including all low...
We consider quantum-mechanically partially polarized light propagating through a Kerr-like medium. U...
We investigate quantum electrodynamic effects under the influence of an external, time-dependent ele...
We consider the Heisenberg-Euler action for an electromagnetic field in vacuum, which includes quant...
The authors examine spatio-temporal descriptions of the electro-magnetic field in linear and nonline...
We consider signals of photon-photon scattering in laser-based, low energy experiments. In particula...
A long-standing prediction of quantum electrodynamics, yet to be experimentally observed, is the int...
We explore the perspectives of studying vacuum birefringence at the Gamma Factory. To this end, we a...
International audienceWe study the behavior of reduced models for the propagation of intense laser p...
The photon magnetic moment for radiation propagating in magnetized vacuum is defined as a pseudotens...
The scattering of high-power probe laser pulses by tightly focused ultra-strong laser pulses has bee...
A new explicit analytical form of the dispersion relation for photon propagation in the presence of...
Abstract: According to the theory of quantum electrodynamics, zero-point fluctuations of the vacuum ...
The photon polarization tensor is the central building block of an effective theory de-scription of ...
Using the quadratic expansion in the photon fields of Euler–Heisenberg (EH) non-linear electrodynami...
International audienceFrom an effective field theory of electromagnetism in vacuum including all low...
We consider quantum-mechanically partially polarized light propagating through a Kerr-like medium. U...
We investigate quantum electrodynamic effects under the influence of an external, time-dependent ele...
We consider the Heisenberg-Euler action for an electromagnetic field in vacuum, which includes quant...
The authors examine spatio-temporal descriptions of the electro-magnetic field in linear and nonline...
We consider signals of photon-photon scattering in laser-based, low energy experiments. In particula...
A long-standing prediction of quantum electrodynamics, yet to be experimentally observed, is the int...
We explore the perspectives of studying vacuum birefringence at the Gamma Factory. To this end, we a...
International audienceWe study the behavior of reduced models for the propagation of intense laser p...
The photon magnetic moment for radiation propagating in magnetized vacuum is defined as a pseudotens...
The scattering of high-power probe laser pulses by tightly focused ultra-strong laser pulses has bee...
A new explicit analytical form of the dispersion relation for photon propagation in the presence of...