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Related papers: The LHeC Project: e-Ring Revisited

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Main parameters of different colliders which can be realized if a special 1 TeV energy linear electron accelerator or corresponding linear collider is constructed tangential to LHC are estimated. It is shown that L_ep=10^32cm^-2s^-1 at…

High Energy Physics - Experiment · Physics 2007-05-23 O. Yavas , A. K. Ciftci , S. Sultansoy

Chapter 8 in High-Luminosity Large Hadron Collider (HL-LHC) : Preliminary Design Report. The Large Hadron Collider (LHC) is one of the largest scientific instruments ever built. Since opening up a new energy frontier for exploration in…

Accelerator Physics · Physics 2017-05-29 H. Burkhardt , I. Efthymiopoulos

A hadron collider operating at an energy much larger than the LHC ("HE-LHC") would be a logical successor to the LHC itself, especially if its cost can be minimized by reusing a significant part of the CERN infrastructure like the existing…

Accelerator Physics · Physics 2011-08-09 R. Garoby

Chapter 13 in High-Luminosity Large Hadron Collider (HL-LHC) : Preliminary Design Report. The Large Hadron Collider (LHC) is one of the largest scientific instruments ever built. Since opening up a new energy frontier for exploration in…

Accelerator Physics · Physics 2017-05-31 E. Bravin , B. Dehning , R. Jones , T. Lefevre , H. Schmickler

Chapter 17 in High-Luminosity Large Hadron Collider (HL-LHC) : Preliminary Design Report. The Large Hadron Collider (LHC) is one of the largest scientific instruments ever built. Since opening up a new energy frontier for exploration in…

Accelerator Physics · Physics 2017-05-29 C. Adorisio , I. Bejar Alonso , J. C. Gascon , T. Otto , S. Roesler

Chapter 2 in High-Luminosity Large Hadron Collider (HL-LHC) : Preliminary Design Report. The Large Hadron Collider (LHC) is one of the largest scientific instruments ever built. Since opening up a new energy frontier for exploration in…

Chapter 16 in High-Luminosity Large Hadron Collider (HL-LHC) : Preliminary Design Report. The Large Hadron Collider (LHC) is one of the largest scientific instruments ever built. Since opening up a new energy frontier for exploration in…

Accelerator Physics · Physics 2017-05-29 M. Lamont , M. Pojer , J. M. Jowett

We do not have the ability to perform precise calculations of long-range strong interaction effects, because the effective QCD coupling is not small and so we cannot use perturbation theory. Nevertheless, I show that we know a lot, though…

High Energy Physics - Phenomenology · Physics 2008-12-19 P. V. Landshoff

Chapter 11 in High-Luminosity Large Hadron Collider (HL-LHC) : Preliminary Design Report. The Large Hadron Collider (LHC) is one of the largest scientific instruments ever built. Since opening up a new energy frontier for exploration in…

Accelerator Physics · Physics 2017-05-29 M. Karppinen , S. Izquierdo Bermudez , A. Nobrega , H. Prin , D. Ramos , S. Redaelli , F. Savary , D. Smekens , A. Zlobin

We discuss the physics potential and the experimental challenges of an upgraded LHC running at an instantaneous luminosity of 10**35 cm-2s-1. The detector R&D needed to operate ATLAS and CMS in a very high radiation environment and the…

High Energy Physics - Phenomenology · Physics 2014-11-17 F. Gianotti , M. L. Mangano , T. Virdee

High-Luminosity running at the LHC, which is planned for 2022 and beyond, will imply an order of magnitude increase in radiation levels and particle fluences with respect to the present LHC running conditions. The performance evolution of…

Instrumentation and Detectors · Physics 2014-09-11 Andrea Massironi

Different limitations on luminosity of linac-ring type colliders coming from beam dynamics issues are considered for the examples of the $ep$ options of the THERA and LinacXLHC proposals. It is shown that $L=1.3\times 10^{31}$ for THERA and…

Accelerator Physics · Physics 2007-05-23 A. K. Ciftci , E. Recepoglu , S. Sultansoy

The Large Hadron Electron Collider (LHeC) is a proposed upgrade to the LHC, to provide high energy, high luminosity electron-proton collisions to run concurrently with Phase 2 of the LHC. The baseline design of a detector for the LHeC is…

Accelerator Physics · Physics 2013-10-10 Peter Kostka , Alessandro Polini , David M. South

Chapter 3 in High-Luminosity Large Hadron Collider (HL-LHC) : Preliminary Design Report. The Large Hadron Collider (LHC) is one of the largest scientific instruments ever built. Since opening up a new energy frontier for exploration in…

Chapter 6 in High-Luminosity Large Hadron Collider (HL-LHC) : Preliminary Design Report. The Large Hadron Collider (LHC) is one of the largest scientific instruments ever built. Since opening up a new energy frontier for exploration in…

Accelerator Physics · Physics 2017-05-29 A. Ballarino , J. P. Burnet , D. Ramos , U. Wagner , S. Weisz , Y. Yang

Chapter 7 in High-Luminosity Large Hadron Collider (HL-LHC) : Preliminary Design Report. The Large Hadron Collider (LHC) is one of the largest scientific instruments ever built. Since opening up a new energy frontier for exploration in…

An electron/positron linear collider with a center-of-mass energy between 0.5 and 1 TeV would be an important complement to the physics program of the LHC in the next decade. The Next Linear Collider (NLC) is being designed by a US…

Accelerator Physics · Physics 2009-11-06 T. O. Raubenheimer

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…

High Energy Physics - Experiment · Physics 2022-09-20 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 , S. Bailey , F. Balli , S. Behera , O. Behnke , I. Ben-Zvi , M. Benedikt , J. Bernauer , S. Bertolucci , S. S. Biswal , J. Blümlein , A. Bogacz , M. Bonvini , M. Boonekamp , F. Bordry , G. R. Boroun , L. Bottura , S. Bousson , A. O. Bouzas , C. Bracco , J. Bracinik , D. Britzger , S. J. Brodsky , C. Bruni , O. Brüning , H. Burkhardt , O. Cakir , R. Calaga , A. Caldwell , A. Calıskan , S. Camarda , N. C. Catalan-Lasheras , K. Cassou , J. Cepila , V. Cetinkaya , V. Chetvertkova , B. Cole , B. Coleppa , A. Cooper-Sarkar , E. Cormier , A. S. Cornell , R. Corsini , E. Cruz-Alaniz , J. Currie , D. Curtin , M. D'Onofrio , J. Dainton , E. Daly , A. Das , S. P. Das , L. Dassa , J. de Blas , L. Delle Rose , H. Denizli , K. S. Deshpande , D. Douglas , L. Duarte , K. Dupraz , S. Dutta , A. V. Efremov , R. Eichhorn , K. J. Eskola , E. G. Ferreiro , O. Fischer , O. Flores-Sánchez , S. Forte , A. Gaddi , J. Gao , T. Gehrmann , A. Gehrmann-De Ridder , F. Gerigk , A. Gilbert , F. Giuli , A. Glazov , N. Glover , R. M. Godbole , B. Goddard , V. Gonçalves , G. A. Gonzalez-Sprinberg , A. Goyal , J. Grames , E. Granados , A. Grassellino , Y. O. Gunaydin , Y. C. Guo , V. Guzey , C. Gwenlan , A. Hammad , C. C. Han , L. Harland-Lang , F. Haug , F. Hautmann , D. Hayden , J. Hessler , I. Helenius , J. Henry , J. Hernandez-Sanchez , H. Hesari , T. J. Hobbs , N. Hod , G. H. Hoffstaetter , B. Holzer , C. G. Honorato , B. Hounsell , N. Hu , F. Hug , A. Huss , A. Hutton , R. Islam , S. Iwamoto , S. Jana , M. Jansova , E. Jensen , T. Jones , J. M. Jowett , W. Kaabi , M. Kado , D. A. Kalinin , H. Karadeniz , S. Kawaguchi , U. Kaya , R. A. Khalek , H. Khanpour , A. Kilic , M. Klein , U. Klein , S. Kluth , M. Köksal , F. Kocak , M. Korostelev , P. Kostka , M. Krelina , J. Kretzschmar , S. Kuday , G. Kulipanov , M. Kumar , M. Kuze , T. Lappi , F. Larios , A. Latina , P. Laycock , G. Lei , E. Levitchev , S. Levonian , A. Levy , R. Li , X. Li , H. Liang , V. Litvinenko , M. Liu , T. Liu , W. Liu , Y. Liu , S. Liuti , E. Lobodzinska , D. Longuevergne , X. Luo , W. Ma , M. Machado , S. Mandal , H. Mäntysaari , F. Marhauser , C. Marquet , A. Martens , R. Martin , S. Marzani , J. McFayden , P. Mcintosh , B. Mellado , F. Meot , A. Milanese , J. G. Milhano , B. Militsyn , M. Mitra , S. Moch , M. Mohammadi Najafabadi , S. Mondal , S. Moretti , T. Morgan , A. Morreale , P. Nadolsky , F. Navarra , Z. Nergiz , P. Newman , J. Niehues , E. A. Nissen , M. Nowakowski , N. Okada , G. Olivier , F. Olness , G. Olry , J. A. Osborne , A. Ozansoy , R. Pan , B. Parker , M. Patra , H. Paukkunen , Y. Peinaud , D. Pellegrini , G. Perez-Segurana , D. Perini , L. Perrot , N. Pietralla , E. Pilicer , B. Pire , J. Pires , R. Placakyte , M. Poelker , R. Polifka , A. Polini , P. Poulose , G. Pownall , Y. A. Pupkov , F. S. Queiroz , K. Rabbertz , V. Radescu , R. Rahaman , S. K. Rai , N. Raicevic , P. Ratoff , A. Rashed , D. Raut , S. Raychaudhuri , J. Repond , A. H. Rezaeian , R. Rimmer , L. Rinolfi , J. Rojo , A. Rosado , X. Ruan , S. Russenschuck , M. Sahin , C. A. Salgado , O. A. Sampayo , K. Satendra , N. Satyanarayan , B. Schenke , K. Schirm , H. Schopper , M. Schott , D. Schulte , C. Schwanenberger , T. Sekine , A. Senol , A. Seryi , S. Setiniyaz , L. Shang , X. Shen , N. Shipman , N. Sinha , W. Slominski , S. Smith , C. Solans , M. Song , H. Spiesberger , J. Stanyard , A. Starostenko , A. Stasto , A. Stocchi , M. Strikman , M. J. Stuart , S. Sultansoy , H. Sun , M. Sutton , L. Szymanowski , I. Tapan , D. Tapia-Takaki , M. Tanaka , Y. Tang , A. T. Tasci , A. T. Ten-Kate , P. Thonet , R. Tomas-Garcia , D. Tommasini , D. Trbojevic , M. Trott , I. Tsurin , A. Tudora , I. Turk Cakir , K. Tywoniuk , C. Vallerand , A. Valloni , D. Verney , E. Vilella , D. Walker , S. Wallon , B. Wang , K. Wang , K. Wang , X. Wang , Z. S. Wang , H. Wei , C. Welsch , G. Willering , P. H. Williams , D. Wollmann , C. Xiaohao , T. Xu , C. E. Yaguna , Y. Yamaguchi , Y. Yamazaki , H. Yang , A. Yilmaz , P. Yock , C. X. Yue , S. G. Zadeh , O. Zenaiev , C. Zhang , J. Zhang , R. Zhang , Z. Zhang , G. Zhu , S. Zhu , F. Zimmermann , F. Zomer , J. Zurita , P. Zurita

Chapter 12 in High-Luminosity Large Hadron Collider (HL-LHC) : Preliminary Design Report. The Large Hadron Collider (LHC) is one of the largest scientific instruments ever built. Since opening up a new energy frontier for exploration in…

Accelerator Physics · Physics 2017-05-31 V. Baglin , P. Chiggiato , P. Cruikshank , M. Gallilee , C. Garion , R. Kersevan

The discovery of H(126) has renewed interest in circular e+e- colliders that can operate as Higgs factories, which benefit from three unique characteristics: i) high luminosity and reliability, ii) the availability of several interaction…

Accelerator Physics · Physics 2013-06-26 M. Koratzinos , A. P. Blondel , R. Aleksan , P. Janot , F. Zimmermann , J. R. Ellis , M. Zanetti