Measuring multi-body QCD
APA
(). Measuring multi-body QCD. SciVideos. https://scivideos.org/icts-tifr/34163
MLA
Measuring multi-body QCD. SciVideos, , https://scivideos.org/icts-tifr/34163
BibTex
@misc{ scivideos_ICTS:34163,
doi = {},
url = {https://scivideos.org/icts-tifr/34163},
author = {},
keywords = {},
language = {en},
title = {Measuring multi-body QCD},
publisher = {},
year = {},
month = {},
note = {ICTS:34163 see, \url{https://scivideos.org/icts-tifr/34163}}
}
Abstract
Multi-body QCD exhibits rich and complex phenomenology, notably in the Quark-Gluon Plasma (QGP) at high temperature, which is generated in nuclear collisions at RHIC and the LHC; and at high density, corresponding to low momentum fraction x in hadrons and nuclei, which can be probed by forward RHIC and LHC measurements and the future Electron-Ion Collider.
These lectures will explore how we study multi-body QCD by combining experiment and theory. The focus of the first two lectures is the measurement of jet quenching, the interaction of energetic quark and gluon jets with the QGP. The third lecture discusses a comprehensive analysis of the world’s jet quenching data using Bayesian Inference enhanced by Machine Learning, to quantify the structure and dynamics of the QGP. The fourth lecture turns to many-body QCD at low x, presenting a new framework for the comprehensive analysis of Deep Inelastic Scattering and hadron collider data - likewise using ML-enhanced Bayesian Inference - to search for evidence of non-linear QCD evolution and gluon saturation.