First Demonstration that Quark-Gluon Plasma has a Nonzero Resolution Length
Abstract
We report on our investigation in arXiv:2509.08881 of how recent jet substructure measurements constrain the resolution length of the quark-gluon plasma formed in heavy-ion collisions. is defined such that high-energy partons within a jet shower are resolved by the medium if and only if they are separated by a distance greater than . Using the Hybrid Model, we reproduce ALICE data on the scaled Soft Drop angle for charged-particle jets and ATLAS data on the Hard Group angle for jets reclustered from skinny inclusive subjets. We find that the narrowing of the -distribution in PbPb collisions observed by ALICE and the suppression of jets with multiple skinny subjets in PbPb collisions observed by ATLAS rule out , where each entire parton shower loses energy to the plasma coherently as if it were a single colored object. We then compare Hybrid Model calculations to ATLAS measurements of of jets reclustered from subjets, as a function of the Soft Drop angle obtained by grooming all charged-particle tracks associated with each jet. We demonstrate, for the first time, that the ATLAS data is inconsistent with , where the plasma resolves every splitting in a parton shower. Our results agree best with the data when QGP possesses a finite, nonzero .
Keywords
Cite
@article{arxiv.2510.03390,
title = {First Demonstration that Quark-Gluon Plasma has a Nonzero Resolution Length},
author = {Arjun Srinivasan Kudinoor and Daniel Pablos and Krishna Rajagopal},
journal= {arXiv preprint arXiv:2510.03390},
year = {2025}
}
Comments
11 pages, 4 figures. Contribution to the XQCD 2025 Proceedings. Based on arXiv:2509.08881