The prospect of next-generation ultra-high-intensity laser sources has prompted recent renewed study of nonlinear QED processes, such as the Schwinger effect, in which the instability of the QED vacuum is probed by external fields. Experimental observation of these nonlinear QED effects would provide unprecedented controlled access to non-perturbative processes in quantum field theory under extreme conditions, which is of direct interest in particle physics and astrophysical applications. I summarize important theoretical issues, both conceptual and computational, related to these nonlinear QED effects
A detailed analysis of the process of two-photon emission by an electron scattered from a high-inten...
We investigate the impact of the Adler-Bell-Jackiw anomaly on the nonequilibrium evolution of strong...
We present a short review of recent progress in studying QED effects within the interaction of ultra...
Upcoming and planned experiments combining increasingly intense lasers and energetic particle beams ...
The quantum vacuum constitutes a fascinating medium of study, in particular since near-future laser ...
The vacuum of quantum electrodynamics is unstable against the formation of many-body states in the p...
An in-depth analysis of two recent studies on nonlinear QED effects relevant to large-scale numerica...
Abstract. We expect that at laser intensities larger than 10ଶସܹ/ܿ݉ ଶ laser-matter interaction will i...
After a brief review of higher-order QED effects, a survey is made of novel aspects of QED with emph...
The commissioning of the high power laser facility Extreme Light Infrastructure - Nuclear Physics (E...
The field of laser-matter interaction traditionally deals with the response of atoms, molecules and ...
We propose experiments on the collision of high intensity electromagnetic pulses with electron bunch...
The theory of quantum electrodynamics (QED) was born out of an attempt to merge Einsteins theory of ...
The dynamical Schwinger effect refers to the creation of electron-positron pairs by a time dependent...
This book covers a large class of fundamental investigations into Relativistic Nonlinear Electrodyna...
A detailed analysis of the process of two-photon emission by an electron scattered from a high-inten...
We investigate the impact of the Adler-Bell-Jackiw anomaly on the nonequilibrium evolution of strong...
We present a short review of recent progress in studying QED effects within the interaction of ultra...
Upcoming and planned experiments combining increasingly intense lasers and energetic particle beams ...
The quantum vacuum constitutes a fascinating medium of study, in particular since near-future laser ...
The vacuum of quantum electrodynamics is unstable against the formation of many-body states in the p...
An in-depth analysis of two recent studies on nonlinear QED effects relevant to large-scale numerica...
Abstract. We expect that at laser intensities larger than 10ଶସܹ/ܿ݉ ଶ laser-matter interaction will i...
After a brief review of higher-order QED effects, a survey is made of novel aspects of QED with emph...
The commissioning of the high power laser facility Extreme Light Infrastructure - Nuclear Physics (E...
The field of laser-matter interaction traditionally deals with the response of atoms, molecules and ...
We propose experiments on the collision of high intensity electromagnetic pulses with electron bunch...
The theory of quantum electrodynamics (QED) was born out of an attempt to merge Einsteins theory of ...
The dynamical Schwinger effect refers to the creation of electron-positron pairs by a time dependent...
This book covers a large class of fundamental investigations into Relativistic Nonlinear Electrodyna...
A detailed analysis of the process of two-photon emission by an electron scattered from a high-inten...
We investigate the impact of the Adler-Bell-Jackiw anomaly on the nonequilibrium evolution of strong...
We present a short review of recent progress in studying QED effects within the interaction of ultra...