A primary electron beam facility at CERN -- eSPS Conceptual design report
M. Aicheler, T. Akesson, F. Antoniou, A. Arnalich, P. A. Arrutia Sota,, P. Bettencourt Moniz Cabral, D. Bozzini, M. Brugger, O. Brunner, P. N., Burrows, R. Calaga, M. J. Capstick, R. Corsini, S. Doebert, L. A. Dougherty,, Y. Dutheil, L. A. Dyks, O. Etisken, L. Evans

TL;DR
This paper proposes a conceptual design for a new electron beam facility at CERN, leveraging existing accelerator technology to advance particle physics research, dark matter studies, and neutrino physics.
Contribution
It introduces a novel facility design that re-enables the SPS as an electron accelerator, integrating CLIC technology for diverse physics applications and R&D.
Findings
Enables light dark matter production beyond thermal targets.
Supports precise neutrino-nucleus interaction measurements.
Provides a platform for plasma wakefield acceleration research.
Abstract
The design of a primary electron beam facility at CERN is described. The study has been carried out within the framework of the wider Physics Beyond Colliders study. It re-enables the Super Proton Synchrotron (SPS) as an electron accelerator, and leverages the development invested in Compact Linear Collider (CLIC) technology for its injector and as an accelerator research and development infrastructure. The facility would be relevant for several of the key priorities in the 2020 update of the European Strategy for Particle Physics, such as an electron-positron Higgs factory, accelerator R\&D, dark sector physics, and neutrino physics. In addition, it could serve experiments in nuclear physics. The electron beam delivered by this facility would provide access to light dark matter production significantly beyond the targets predicted by a thermal dark matter origin, and for natures of…
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