A unified picture of medium-induced radiation
arXiv:2206.02811 · doi:10.1007/JHEP02(2023)156
Abstract
We revisit the picture of jets propagating in the quark-gluon plasma. In addition to vacuum radiation, partons scatter on the medium constituents resulting in induced emissions. Analytical approaches to including these interactions have traditionally dealt separately with multiple, soft, or rare, hard scatterings. A full description has so far only been available using numerical methods. We achieve full analytical control of the relevant scales and map out the dominant physical processes in the full phase space. To this aim, we extend existing expansion schemes for the medium-induced spectrum to the Bethe--Heitler regime. This covers the whole phase space from early to late times, and from hard splittings to emissions below the thermal scale. Based on the separation of scales, a space-time picture naturally emerges: at early times, induced emissions start to build from rare scatterings with the medium. At a later stage, induced emissions due to multiple soft scatterings result in a turbulent cascade that rapidly degrades energy down to, and including, the Bethe--Heitler regime. We quantify the impact of such an improved picture, compared to the current state-of-the-art factorization that includes only soft scatterings, by both analytical and numerical methods for the medium-induced energy distribution function. Our work serves to improve our understanding of jet quenching from small to large systems and for future upgrades of Monte Carlo generators.
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References in corpus (29)
- Jet physics in heavy-ion collisions
- Antiangular Ordering of Gluon Radiation in QCD Media
- Parton showers beyond leading logarithmic accuracy
- Heavy quarks and jets as probes of the QGP
- Medium response in JEWEL and its impact on jet shape observables in heavy ion collisions
- Finite-size effects on the radiative energy loss of a fast parton in hot and dense strongly interacting matter
- Extending Soft-Collinear-Effective-Theory to describe hard jets in dense QCD media
- Picturing perturbative parton cascades in QCD matter
- Simple Formula for High-Energy Gluon Bremsstrahlung in a Finite, Expanding Medium
- Medium-induced gluon radiation with full resummation of multiple scatterings for realistic parton-medium interactions
- Revisiting transverse momentum broadening in dense QCD media
- Cone size dependence of jet suppression in heavy-ion collisions
- Dynamically groomed jet radius in heavy-ion collisions
- Higher-order non-global logarithms from jet calculus
- Medium-induced radiative kernel with the Improved Opacity Expansion
- Improved opacity expansion at NNLO for medium induced gluon radiation
- Nuclear modification factors for jet fragmentation
- Medium-induced fragmentation and equilibration of highly energetic partons
- Non-perturbative determination of collisional broadening and medium induced radiation in QCD plasmas
- The LPM effect in sequential bremsstrahlung: nearly complete results for QCD
- High-energy gluon bremsstrahlung in a finite medium: harmonic oscillator versus single scattering approximation
- Quenching effects in the cumulative jet spectrum
- Effective Field Theory for jet substructure in heavy ion collisions
- A modified in-medium evolution equation with color coherence
- From soft to hard radiation: the role of multiple scatterings in medium-induced gluon emissions
- Splitting rates in QCD plasmas from a non-perturbative determination of the momentum broadening kernel
- Multi-partonic medium induced cascades in expanding media
- The medium-modified splitting function in the BDMPS-Z formalism
- Medium induced QCD cascades: broadening and rescattering during branching
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- Dead-cone searches in heavy-ion collisions using the jet tree
- Jet substructure observables for jet quenching in Quark Gluon Plasma: a Machine Learning driven analysis
- Color Glass Condensate meets High Twist Expansion
- QCD antenna radiative spectrum in dense media within the Improved Opacity Expansion
- Coherent gluon radiation: beyond leading-log accuracy
- Predictions for photon-jet correlations at forward rapidities in heavy-ion collisions