English

Extracting the temperature dependence in high-$p_\perp$ particle energy loss

Nuclear Theory 2021-02-24 v1 High Energy Physics - Phenomenology

Abstract

The suppression of high-pp_\perp particles is one of the main signatures of parton energy loss during its passing through the QGP medium, and is reasonably reproduced by different theoretical models. However, a decisive test of the reliability of a certain energy loss mechanism, apart from its path-length, is its temperature dependence. Despite its importance and comprehensive dedicated studies, this issue is still awaiting for more stringent constraints. To this end, we here propose a novel observable to extract temperature dependence exponent of high-pp_{\perp} particle's energy loss, based on RAAR_{AA}. More importantly, by combining analytical arguments, full-fledged numerical calculations and comparison with experimental data, we argue that this observable is highly suited for testing (and rejecting) the long-standing ΔE/EL2T3\Delta E/E \propto L^2 T^3 paradigm. The anticipated significant reduction of experimental errors will allow direct extraction of temperature dependence, by considering different centrality pair in A+AA + A collisions (irrespective of the nucleus size) in high-pp_\perp region. Overall, our results imply that this observable, which reflects the underlying energy loss mechanism, is very important to distinguish between different theoretical models.

Keywords

Cite

@article{arxiv.2007.07851,
  title  = {Extracting the temperature dependence in high-$p_\perp$ particle energy loss},
  author = {Stefan Stojku and Bojana Ilic and Marko Djordjevic and Magdalena Djordjevic},
  journal= {arXiv preprint arXiv:2007.07851},
  year   = {2021}
}

Comments

19 pages, 7 figures