Multi-partonic medium induced cascades in expanding media
Journal article, Peer reviewed
Published version

View/ Open
Date
2022Metadata
Show full item recordCollections
- Department of Physics and Technology [2213]
- Registrations from Cristin [11745]
Abstract
Going beyond the simplified gluonic cascades, we introduce both gluon and quark degrees of freedom for partonic cascades inside the medium. We then solve the set of coupled evolution equations numerically with splitting kernels calculated for static, exponential, and Bjorken expanding media to arrive at medium-modified parton spectra for quark and gluon initiated jets. Using these, we calculate the inclusive jet RAA where the phenomenologically driven combinations of quark and gluon jet fractions are included. Then, the rapidity dependence of the jet RAA is examined. We also study the path-length dependence of jet quenching for different types of expanding media by calculating the jet v2 . Additionally, we study the sensitivity of observables on effects from nuclear modification of parton distribution functions, vacuum-like emissions in the plasma, and the time of the onset of the quenching. All calculations are compared with recently measured data.