Collisional strong-field QED kinetic equations from first principles
Gregor Fauth, J\"urgen Berges, Antonino Di Piazza

TL;DR
This paper derives comprehensive kinetic equations for strong-field QED from first principles, incorporating quantum Vlasov and collision effects, applicable to intense laser fields, heavy ion collisions, and condensed matter systems.
Contribution
It introduces a systematic derivation of kinetic equations in strong-field QED that include collision terms and generalized scattering amplitudes beyond the locally-constant crossed field approximation.
Findings
Derived kinetic equations with quantum Vlasov and collision terms.
Included processes like photon emission, pair production, and vacuum effects.
Provided expressions for fermion pair number including collisions.
Abstract
Starting from nonequilibrium quantum field theory on a closed time path, we derive kinetic equations for the strong-field regime of quantum electrodynamics (QED) using a systematic expansion in the gauge coupling . The strong field regime is characterized by a large photon field of order , which is relevant for the description of, e.g., intense laser fields, the initial stages of off-central heavy ion collisions, and condensed matter systems with net fermion number. The strong field enters the dynamical equations via both quantum Vlasov and collision terms, which we derive to order . The kinetic equations feature generalized scattering amplitudes that have their own equation of motion in terms of the fermion spectral function. The description includes single photon emission, electron-positron pair photoproduction, vacuum (Schwinger) pair…
Peer Reviews
No public reviews on file for this paper yet. If you reviewed it on a platform where reviews are public (OpenReview, ICLR, NeurIPS, ICML), you can paste yours below so the community can read it here.
Videos
No videos yet. Explain this paper in a talk, walkthrough, or lecture? Add one.
