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Parton energy loss and momentum broadening at NLO in high temperature QCD plasmas

  • University of Bern

Research output: Contribution to journalReview articlepeer-review

41 Scopus citations

Abstract

We present an overview of a perturbative-kinetic approach to jet propagation, energy loss, and momentum broadening in a high temperature quark-gluon plasma. The leading-order kinetic equations describe the interactions between energetic jet-particles and a non-abelian plasma, consisting of on-shell thermal excitations and soft gluonic fields. These interactions include ↔ scatterings, collinear bremsstrahlung, and drag and momentum diffusion. We show how the contribution from the soft gluonic fields can be factorized into a set of Wilson line correlators on the light-cone. We review recent field-theoretical developments, rooted in the causal properties of these correlators, which simplify the calculation of the appropriate Wilson lines in thermal field theory. With these simplifications lattice measurements of transverse momentum broadening have become possible, and the kinetic equations describing parton transport have been extended to next-to-leading order in the coupling g.

Original languageEnglish
Article number1530013
JournalInternational Journal of Modern Physics E
Volume24
Issue number11
DOIs
StatePublished - Nov 1 2015

Keywords

  • Quark-gluon plasma
  • jet quenching
  • next-to-leading order

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