The Large Hadron-Electron Collider at the HL-LHC
P. Agostini, H. Aksakal, S. Alekhin, P. P. Allport, N. Andari, K. D., J. Andre, D. Angal-Kalinin, S. Antusch, L. Aperio Bella, L. Apolinario, R., Apsimon, A. Apyan, G. Arduini, V. Ari, A. Armbruster, N. Armesto, B., Auchmann, K. Aulenbacher, G. Azuelos, S. Backovic, I. Bailey

TL;DR
The paper updates the design and physics potential of the Large Hadron Electron Collider (LHeC), highlighting advancements in accelerator technology, physics reach, and potential for new discoveries in particle physics and nuclear studies.
Contribution
It provides a detailed updated conceptual design of the LHeC, including new technological developments, physics analyses, and the integration of the ERL technology with the FCC-eh project.
Findings
Enhanced understanding of proton and nuclear structure at high energies.
Demonstrated the LHeC's potential for Higgs and new physics discovery.
Presented technological advancements in energy recovery linacs.
Abstract
The Large Hadron electron Collider (LHeC) is designed to move the field of deep inelastic scattering (DIS) to the energy and intensity frontier of particle physics. Exploiting energy recovery technology, it collides a novel, intense electron beam with a proton or ion beam from the High Luminosity--Large Hadron Collider (HL-LHC). The accelerator and interaction region are designed for concurrent electron-proton and proton-proton operation. This report represents an update of the Conceptual Design Report (CDR) of the LHeC, published in 2012. It comprises new results on parton structure of the proton and heavier nuclei, QCD dynamics, electroweak and top-quark physics. It is shown how the LHeC will open a new chapter of nuclear particle physics in extending the accessible kinematic range in lepton-nucleus scattering by several orders of magnitude. Due to enhanced luminosity, large energy…
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