A Large Hadron Electron Collider at CERN: Report on the Physics and Design Concepts for Machine and Detector
Abstract
The physics programme and the design are described of a new collider for particle and nuclear physics, the Large Hadron Electron Collider (LHeC), in which a newly built electron beam of 60 GeV, up to possibly 140 GeV, energy collides with the intense hadron beams of the LHC. Compared to HERA, the kinematic range covered is extended by a factor of twenty in the negative four-momentum squared, , and in the inverse Bjorken , while with the design luminosity of cms the LHeC is projected to exceed the integrated HERA luminosity by two orders of magnitude. The physics programme is devoted to an exploration of the energy frontier, complementing the LHC and its discovery potential for physics beyond the Standard Model with high precision deep inelastic scattering measurements. These are designed to investigate a variety of fundamental questions in strong and electroweak interactions. The physics programme also includes electron-deuteron and electron-ion scattering in a range extended by four orders of magnitude as compared to previous lepton-nucleus DIS experiments for novel investigations of neutron's and nuclear structure, the initial conditions of Quark-Gluon Plasma formation and further quantum chromodynamic phenomena. The LHeC may be realised either as a ring-ring or as a linac-ring collider. Optics and beam dynamics studies are presented for both versions, along with technical design considerations on the interaction region, magnets and further components, together with a design study for a high acceptance detector. Civil engineering and installation studies are presented for the accelerator and the detector. The LHeC can be built within a decade and thus be operated while the LHC runs in its high-luminosity phase. It thus represents a major opportunity for progress in particle physics exploiting the investment made in the LHC.
Keywords
Cite
@article{arxiv.1206.2913,
title = {A Large Hadron Electron Collider at CERN: Report on the Physics and Design Concepts for Machine and Detector},
author = {J. L. Abelleira Fernandez and C. Adolphsen and A. N. Akay and H. Aksakal and J. L. Albacete and S. Alekhin and P. Allport and V. Andreev and R. B. Appleby and E. Arikan and N. Armesto and G. Azuelos and M. Bai and D. Barber and J. Bartels and O. Behnke and J. Behr and A. S. Belyaev and I. Ben-Zvi and N. Bernard and S. Bertolucci and S. Bettoni and S. Biswal and J. Blümlein and H. Böttcher and A. Bogacz and C. Bracco and G. Brandt and H. Braun and S. Brodsky and O. Brüning and E. Bulyak and A. Buniatyan and H. Burkhardt and I. T. Cakir and O. Cakir and R. Calaga and V. Cetinkaya and E. Ciapala and R. Ciftci and A. K. Ciftci and B. A. Cole and J. C. Collins and O. Dadoun and J. Dainton and A. De. Roeck and D. d'Enterria and A. Dudarev and A. Eide and R. Enberg and E. Eroglu and K. J. Eskola and L. Favart and M. Fitterer and S. Forte and A. Gaddi and P. Gambino and H. García Morales and T. Gehrmann and P. Gladkikh and C. Glasman and R. Godbole and B. Goddard and T. Greenshaw and A. Guffanti and V. Guzey and C. Gwenlan and T. Han and Y. Hao and F. Haug and W. Herr and A. Hervé and B. J. Holzer and M. Ishitsuka and M. Jacquet and B. Jeanneret and J. M. Jimenez and J. M. Jowett and H. Jung and H. Karadeniz and D. Kayran and A. Kilic and K. Kimura and M. Klein and U. Klein and T. Kluge and F. Kocak and M. Korostelev and A. Kosmicki and P. Kostka and H. Kowalski and G. Kramer and D. Kuchler and M. Kuze and T. Lappi and P. Laycock and E. Levichev and S. Levonian and V. N. Litvinenko and A. Lombardi and J. Maeda and C. Marquet and S. J. Maxfield and B. Mellado and K. H. Mess and A. Milanese and S. Moch and I. I. Morozov and Y. Muttoni and S. Myers and S. Nandi and Z. Nergiz and P. R. Newman and T. Omori and J. Osborne and E. Paoloni and Y. Papaphilippou and C. Pascaud and H. Paukkunen and E. Perez and T. Pieloni and E. Pilicer and B. Pire and R. Placakyte and A. Polini and V. Ptitsyn and Y. Pupkov and V. Radescu and S. Raychaudhuri and L. Rinolfi and R. Rohini and J. Rojo and S. Russenschuck and M. Sahin and C. A. Salgado and K. Sampei and R. Sassot and E. Sauvan and U. Schneekloth and T. Schörner-Sadenius and D. Schulte and A. Senol and A. Seryi and P. Sievers and A. N. Skrinsky and W. Smith and H. Spiesberger and A. M. Stasto and M. Strikman and M. Sullivan and S. Sultansoy and Y. P. Sun and B. Surrow and L. Szymanowski and P. Taels and I. Tapan and A. T. Tasci and E. Tassi and H. Ten. Kate and J. Terron and H. Thiesen and L. Thompson and K. Tokushuku and R. Tomás García and D. Tommasini and D. Trbojevic and N. Tsoupas and J. Tuckmantel and S. Turkoz and T. N. Trinh and K. Tywoniuk and G. Unel and J. Urakawa and P. VanMechelen and A. Variola and R. Veness and A. Vivoli and P. Vobly and J. Wagner and R. Wallny and S. Wallon and G. Watt and C. Weiss and U. A. Wiedemann and U. Wienands and F. Willeke and B. -W. Xiao and V. Yakimenko and A. F. Zarnecki and Z. Zhang and F. Zimmermann and R. Zlebcik and F. Zomer},
journal= {arXiv preprint arXiv:1206.2913},
year = {2015}
}