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Article detail · 2021

The Large Hadron–Electron Collider at the HL-LHC

IOP Publishing

YÖKSİS OpenAlex Open access · hybrid SJR Q1 JCR Q2 Citations 241 Top 1% Percentile 99.9% FWCI 37.54
Year
2021
ISSN
0954-3899
Type
article

Data source split

  • YÖKSİS YÖKSİS article record
  • OpenAlex OpenAlex enrichment (abstract, citations, topics)

Abstract

English (OpenAlex)

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 operations. This report represents an update to the LHeC’s conceptual design report (CDR), published in 2012. It comprises new results on the parton structure of the proton and heavier nuclei, QCD dynamics, and electroweak and top-quark physics. It is shown how the LHeC will open a new chapter of nuclear particle physics by extending the accessible kinematic range of lepton–nucleus scattering by several orders of magnitude. Due to its enhanced luminosity and large energy and the cleanliness of the final hadronic states, the LHeC has a strong Higgs physics programme and its own discovery potential for new physics. Building on the 2012 CDR, this report contains a detailed updated design for the energy-recovery electron linac (ERL), including a new lattice, magnet and superconducting radio-frequency technology, and further components. Challenges of energy recovery are described, and the lower-energy, high-current, three-turn ERL facility, PERLE at Orsay, is presented, which uses the LHeC characteristics serving as a development facility for the design and operation of the LHeC. An updated detector design is presented corresponding to the acceptance, resolution, and calibration goals that arise from the Higgs and parton-density-function physics programmes. This paper also presents novel results for the Future Circular Collider in electron–hadron (FCC-eh) mode, which utilises the same ERL technology to further extend the reach of DIS to even higher centre-of-mass energies.

Topics

  • Particle physics theoretical and experimental studies
  • High-Energy Particle Collisions Research
  • Quantum Chromodynamics and Particle Interactions

Primary topic Particle physics theoretical and experimental studies

Authors

  1. P. Agostini
  2. HÜSNÜ AKSAKAL KAHRAMANMARAŞ SÜTÇÜ İMAM ÜNİVERSİTESİ
  3. S. Alekhin
  4. P. P. Allport
  5. N. Andari
  6. K. D. J. Andre
  7. D. Angal Kalinin
  8. S. Antusch
  9. L. Aperio Bella
  10. L. Apolinario
  11. R. Apsimon
  12. A. Apyan
  13. G. Arduini
  14. VOLKAN ARI
  15. A. Armbruster
  16. N. Armesto
  17. B. Auchmann
  18. K. Aulenbacher
  19. G. Azuelos
  20. S. Backovic
  21. I. Bailey
  22. S. Bailey
  23. F. Balli
  24. S. Behera
  25. O. Behnke
  26. I. Ben Zvi
  27. M. Benedikt
  28. J. Bernauer
  29. S. Bertolucci
  30. S. S. Biswal
  31. J. Blümlein
  32. A. Bogacz
  33. M. Bonvini
  34. M. Boonekamp
  35. F. Bordry
  36. G. R. Boroun
  37. L. Bottura
  38. S. Bousson
  39. A. O. Bouzas
  40. C. Bracco
  41. J. Bracinik
  42. D. Britzger
  43. S. J. Brodsky
  44. C. Bruni
  45. O. Brüning
  46. H. Burkhardt
  47. ORHAN ÇAKIR
  48. R. Calaga
  49. A. Caldwell
  50. ABDULLATİF ÇALIŞKAN
  51. S. Camarda
  52. N. C. Catalan Lasheras
  53. K. Cassou
  54. J. Cepila
  55. VOLKAN ÇETİNKAYA
  56. V. Chetvertkova
  57. B. Cole
  58. B. Coleppa
  59. A. Cooper Sarkar
  60. E. Cormier
  61. A. S. Cornell
  62. R. Corsini
  63. E. Cruz Alaniz
  64. J. Currie
  65. D. Curtin
  66. M. D Onofrio
  67. J. Dainton
  68. E. Daly
  69. A. Das
  70. S. P. Das
  71. L. Dassa
  72. J. D. Blas
  73. L. Delle Rose
  74. HALUK DENİZLİ
  75. K. S. Deshpande
  76. D. Douglas
  77. L. Duarte
  78. K. Dupraz
  79. S. Dutta
  80. A. V. Efremov
  81. R. Eichhorn
  82. K. J. Eskola
  83. E. G. Ferreiro
  84. O. Fischer
  85. O. Flores Sanchez
  86. S. Forte
  87. A. Gaddi
  88. J. Gao
  89. T. Gehrmann
  90. A. Gehrmann De Ridder
  91. F. Gerigk
  92. A. Gilbert
  93. F. Giuli
  94. A. Glazov
  95. N. Glover
  96. R. M. Godbole
  97. B. Goddard
  98. V. Gonçalves
  99. YUSUF OĞUZHAN GÜNAYDIN KAHRAMANMARAŞ SÜTÇÜ İMAM ÜNİVERSİTESİ
  100. G. A. Gonzalez-Sprinberg
  101. A. Goyal
  102. J. Grames
  103. E. Granados
  104. A. Grassellino
  105. Y. C. Guo
  106. V. Guzey
  107. C. Gwenlan
  108. A. Hammad
  109. C. C. Han C. C. Han
  110. L. Harland-Lang
  111. F. Haug
  112. F. Hautmann
  113. D. Hayden
  114. J. Hessler
  115. I. Helenius
  116. J. Henry J. Henry
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  135. T. Jones
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  139. D. A. Kalinin
  140. HANDE KARADENİZ
  141. S. Kawaguchi
  142. Ümit Kaya
  143. R. A. Khalek
  144. H. Khanpour
  145. ADNAN KILIÇ
  146. M. Klein M. Klein
  147. U. Klein
  148. S. Kluth
  149. MURAT KÖKSAL
  150. FATMA KOÇAK
  151. M. Korostelev
  152. P. Kostka
  153. M. Krelina
  154. J. Kretzschmar
  155. SİNAN KUDAY
  156. G. Kulipanov
  157. M. Kumar
  158. M. Kuze
  159. T. Lappi
  160. F. Larios
  161. A. Latina
  162. P. Laycock
  163. G. Lei
  164. E. Levitchev
  165. S. Levonian
  166. A. Levy
  167. R. Li
  168. X. Li
  169. H. Liang
  170. V. Litvinenko
  171. M. Liu
  172. T. Liu
  173. W. Liu
  174. Y. Liu
  175. S. Liuti
  176. E. Lobodzinska
  177. D. Longuevergne
  178. X. Luo
  179. W. Ma
  180. M. Machado
  181. S. Mandal
  182. H. Mäntysaari
  183. F. Marhauser
  184. C. Marquet
  185. A. Martens
  186. R. Martin
  187. S. Marzani
  188. J. McFayden
  189. P. Mcintosh
  190. B. Mellado
  191. F. Meot
  192. A. Milanese
  193. J. G. Milhano
  194. B. Militsyn
  195. M. Mitra
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  198. S. Mondal
  199. S. Moretti
  200. T. Morgan
  201. A. Morreale
  202. P. Nadolsky
  203. F. Navarra
  204. ZAFER NERGİZ
  205. P. Newman
  206. J. Niehues
  207. E. A. Nissen
  208. M. Nowakowski
  209. N. Okada
  210. G. Olivier
  211. F. Olness
  212. G. Olry
  213. J. A. Osborne
  214. AYSUHAN OZANSOY
  215. R. Pan
  216. B. Parker
  217. M. Patra
  218. H. Paukkunen
  219. Y. Peinaud
  220. D. Pellegrini
  221. G. Perez-Segurana
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  223. L. Perrot
  224. N. Pietralla
  225. E. Piliçer
  226. B. Pire
  227. J. Pires
  228. R. Placakyte
  229. M. Poelker
  230. R. Polifka
  231. A. Polini
  232. P. Poulose
  233. G. Pownall
  234. Y. A. Pupkov
  235. F. S. Queiroz
  236. K. Rabbertz
  237. V. Radescu
  238. R. Rahaman
  239. S. K. Rai
  240. N. Raicevic
  241. P. Ratoff
  242. A. Rashed
  243. D. Raut
  244. S. Raychaudhuri
  245. J. Repond
  246. A. H. Rezaeian
  247. R. Rimmer
  248. L. Rinolfi
  249. J. Rojo
  250. A. Rosado
  251. X. Ruan
  252. S. Russenschuck
  253. MEHMET ŞAHİN UŞAK ÜNİVERSİTESİ
  254. C. A. Salgado
  255. O. A. Sampayo
  256. K. Satendra
  257. N. Satyanarayan
  258. B. Schenke
  259. K. Schirm
  260. H. Schopper
  261. M. Schott
  262. D. Schulte
  263. C. Schwanenberger
  264. T. Sekine
  265. ABDULKADİR ŞENOL
  266. A. Seryi
  267. S. Setiniyaz
  268. L. Shang
  269. X. Shen
  270. N. Shipman
  271. N. Sinha
  272. W. Slominski
  273. S. Smith
  274. C. Solans
  275. M. Song
  276. H. Spiesberger
  277. J. Stanyard
  278. A. Starostenko
  279. A. Stasto
  280. A. Stocchi
  281. M. Strikman
  282. M. J. Stuart
  283. SALEH SULTANOV
  284. H. Sun
  285. M. Sutton
  286. L. Szymanowski
  287. I. Tapan I. Tapan
  288. D. Tapia-Takaki
  289. M. Tanaka
  290. I. Tapan
  291. Y. Tang
  292. AHMET TOLGA TAŞÇI
  293. A. T. Ten-Kate
  294. P. Thonet
  295. R. Tomas-Garcia
  296. D. Tommasini
  297. D. Trbojevic
  298. M. Trott
  299. I. Tsurin
  300. A. Tudora
  301. İLKAY TÜRK ÇAKIR
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  303. C. Vallerand
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  327. C. Zhang
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