An Experiment for Electron-Hadron Scattering at the LHC
Abstract
Novel considerations are presented on the physics, apparatus and accelerator designs for a future, luminous, energy frontier electron-hadron () scattering experiment at the LHC in the thirties for which key physics topics and their relation to the hadron-hadron HL-LHC physics programme are discussed. Demands are derived set by these physics topics on the design of the LHeC detector, a corresponding update of which is described. Optimisations on the accelerator design, especially the interaction region (IR), are presented. Initial accelerator considerations indicate that a common IR is possible to be built which alternately could serve and collisions while other experiments would stay on in either condition. A forward-backward symmetrised option of the LHeC detector is sketched which would permit extending the LHeC physics programme to also include aspects of hadron-hadron physics. The vision of a joint and physics experiment is shown to open new prospects for solving fundamental problems of high energy heavy-ion physics including the partonic structure of nuclei and the emergence of hydrodynamics in quantum field theory while the genuine TeV scale DIS physics is of unprecedented rank.
Cite
@article{arxiv.2201.02436,
title = {An Experiment for Electron-Hadron Scattering at the LHC},
author = {K. D. J. André and L. Aperio Bella and N. Armesto and S. A. Bogacz and D. Britzger and O. S. Brüning and M. D'Onofrio and E. G. Ferreiro and O. Fischer and C. Gwenlan and B. J. Holzer and M. Klein and U. Klein and F. Kocak and P. Kostka and M. Kumar and B. Mellado and J. G. Milhano and P. R. Newman and K. Piotrzkowski and A. Polini and X. Ruan and S. Russenschuk and C. Schwanenberger and E. Vilella-Figueras and Y. Yamazaki},
journal= {arXiv preprint arXiv:2201.02436},
year = {2022}
}
Comments
27 pages, 24 figures, 6 tables; to appear in Eur. Phys. J. C