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A superconducting (SC) linac is expected to lead to outstanding discoveries in various scientific fields because its beam current is a few orders of magnitude larger than in a normal-conducting linac. However, the widespread use of SC linac…

Accelerator Physics · Physics 2019-04-17 Miho Shimada

The Future Circular Collider (FCC) is a post-LHC project aiming at searches for physics beyond the SM in a new 80--100~km tunnel at CERN. Running in its first phase as a very-high-luminosity electron-positron collider (FCC-ee), it will…

High Energy Physics - Phenomenology · Physics 2016-10-21 Peter Skands , David d'Enterria

The Circular Electron-Positron Collider (CEPC), a proposed next-generation Higgs factory, provides new opportunities to explore physics beyond the Standard Model (SM). With its clean electron-positron collision environment and the ability…

High Energy Physics - Experiment · Physics 2025-10-13 Xiaocong Ai , Stefan Antusch , Peter Athron , Yunxiang Bai , Shou-Shan Bao , Daniele Barducci , Xiao-Jun Bi , Tianji Cai , Lorenzo Calibbi , Junsong Cang , Junjie Cao , Wei Chao , Boping Chen , Gang Chen , Long Chen , Mingshui Chen , Shanzhen Chen , Xiang Chen , Huajie Cheng , Huitong Cheng , Yaodong Cheng , Kingman Cheung , Min-Huan Chu , João Barreiro Guimarães da Costa , Xinchen Dai , Arindam Das , Zhi-fu Deng , Frank F. Deppisch , P. S. Bhupal Dev , Yabo Dong , Marco Drewes , Xiaokang Du , Yong Du , Jun Fan , Yaquan Fang , Cunfeng Feng , Andrew Fowlie , Hao-fei Gao , Jie Gao , Lin-Qing Gao , Meisen Gao , Yu Gao , Yuanning Gao , Bruce Mellado Garcia , Shao-Feng Ge , Ti Gong , Jiayin Gu , Lei Guo , Pei-Hong Gu , Yu-Chen Guo , Zhi-Hui Guo , Jan Hajer , Rabia Hameed , Chengcheng Han , Shuo Han , Tao Han , Xiqing Hao , Hong-Jian He , Xiaogang He , Yangle He , Sven Heinemeyer , Zhaoxia Heng , Xiao-Hui Hu , Fa Peng Huang , Fei Huang , Yanping Huang , Jianfeng Jiang , Xu-Hui Jiang , Hong-Bo Jin , Mingjie Jin , Shan Jin , Wenyi Jin , Mussawir Khan , Honglei Li , Jiarong Li , Jinmian Li , Liang Li , Lingfeng Li , Qiang Li , Shu Li , Tianjun Li , Tong Li , Weidong Li , Xin-Qiang Li , Ying Li , Yuhui Li , Zhao Li , Shiyi Liang , Zhijun Liang , Chengxin Liao , Hongbo Liao , Jiajun Liao , Hai Lin , Bo Liu , Hang Liu , Jia Liu , Jianbei Liu , Jianglai Liu , Tao Liu , Wei Liu , Yang Liu , Zhaofeng Liu , Zhen Liu , Zuowei Liu , Xinchou Lou , Chih-Ting Lu , Feng Lyu , Kai Ma , Lianliang Ma , Farvah Mahmoudi , Sanjoy Mandal , Yajun Mao , Ying-nan Mao , Manimala Mitra , Roberto A. Morales , Michael Ramsey-Musolf , Miha Nemevšek , Takaaki Nomura , C. J. Ouseph , Yusi Pan , Junle Pei , Fazhi Qi , Huirong Qi , Zan Ren , Craig D. Roberts , Manqi Ruan , Liangliang Shang , Dingyu Shao , Yue-Long Shen , Yu-Ji Shi , Sujay Shil , Huayang Song , Shufang Su , Wei Su , Hao Sun , Xiaohu Sun , Zheng Sun , Zhijia Sun , Jin-Xin Tan , Van Que Tran , Bin Wang , Dayong Wang , En Wang , Fei Wang , Guang-Yu Wang , Hengyu Wang , Jianchun Wang , Jin Wang , Jin-Wei Wang , Kechen Wang , Kun Wang , Sai Wang , Wei Wang , Wenyu Wang , Xiao-Ping Wang , Yi Wang , Yifang Wang , You-kai Wang , Yuexin Wang , Yu-Ming Wang , Zeren Simon Wang , Zheng Wang , Lei Wu , Peiwen Wu , Yongcheng Wu , Yusheng Wu , Guotao Xia , Ligang Xia , Rui-Qing Xiao , Ke-Pan Xie , Ye Xing , Zhi-zhong Xing , Da Xu , Fang Xu , Ji Xu , Bin Yan , Qi Yan , Haijun Yang , Jin-Min Yang , Shuo Yang , Jingbo Ye , Peng-Fei Yin , Zhengyun You , Zhao-Huan Yu , Jiarong Yuan , Xing-Bo Yuan , Chongxing Yue , Yuanfang Yue , Jun Zeng , Hao Zhang , Hong Zhang , Hong-Hao Zhang , Huaqiao Zhang , Kaili Zhang , Mengchao Zhang , Mu-Hua Zhang , Qi-An Zhang , Xinmin Zhang , Yang Zhang , Ying Zhang , Yongchao Zhang , Yu Zhang , Yu Zhang , Qiang Zhao , Shuai Zhao , Chen Zhou , Haijing Zhou , Ye-Ling Zhou , Bin Zhu , Jingya Zhu , Jing-Yu Zhu , Pengxuan Zhu , Qianteng Zhu , Rui Zhu , Xuai Zhuang

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

A 100 TeV pp collider is under consideration, by the high-energy physics community, as an important step for the future development of our field, following the completion of the LHC and High-luminosity LHC physics programmes. In particular,…

High Energy Physics - Phenomenology · Physics 2017-10-18 Michelangelo Mangano

We discuss a high-energy photon linear collider (HE PLC) based on the $e^+e^-$ linear collider with cms electron energy $2E = 1 \div 2$ TeV (JLC, CLIC,...). This energy region was previously considered hopeless for experiment. On the…

High Energy Physics - Phenomenology · Physics 2020-02-11 Ilya F. Ginzburg , Gleb L. Kotkin

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 FCC-ee accelerator is considered within the FCC design study as a possible first step towards the ultimate goal of a 100 TeV hadron collider. It is a high luminosity e+e- storage ring collider, designed to cover energies of around 90,…

Accelerator Physics · Physics 2015-11-20 M. Koratzinos

Construction of the ERLC (twin LC) collider tangential to LHC or FCC will give opportunity to realize ep collisions at multi-TeV center-of-mass energies. Luminosity estimations show that values well exceeding 10^34 cm^-2s^-1 can be achieved…

High Energy Physics - Experiment · Physics 2021-07-13 B. Dagli , B. Ketenoglu , S. Sultansoy

The Compact Linear Collider (CLIC) is a high-energy high-luminosity linear electron-positron collider under development. It is foreseen to be built and operated in three stages, at centre-of-mass energies of 380 GeV, 1.5 TeV and 3 TeV,…

Instrumentation and Detectors · Physics 2019-05-08 A. C. Abusleme Hoffman , G. Parès , T. Fritzsch , M. Rothermund , H. Jansen , K. Krüger , F. Sefkow , A. Velyka , J. Schwandt , I. Perić , L. Emberger , C. Graf , A. Macchiolo , F. Simon , M. Szalay , N. van der Kolk , H. Abramowicz , Y. Benhammou , O. Borysov , M. Borysova , A. Joffe , S. Kananov , A. Levy , I. Levy , G. Eigen , R. Bugiel , S. Bugiel , M. Firlej , T. A. Fiutowski , M. Idzik , J. Moroń , K. P. Świentek , P. Terlecki , P. Brückman de Renstrom , B. Turbiarz , T. Wojtoń , L. K. Zawiejski , E. Firu , V. Ghenescu , A. T. Neagu , T. Preda , I. Boyko , Yu. Nefedov , A. Rymbekova , A. Sapronov , G. Shelkov , A. Zhemchugov , A. Ruiz-Jimeno , I. Vila , E. Fullana , J. Fuster , P. Gomis Lopez , M. Perelló , M. A. Villarejo , M. Vos , J. Alozy , N. Alipour Tehrani , D. Arominski , R. Ballabriga Sune , F. Boyer , E. Brondolin , M. Buckland , M. Campbell , D. Dannheim , K. Dette , F. Duarte Ramos , N. Egidos Plaja , K. Elsener , A. Fiergolski , C. Fuentes Rojas , C. Grefe , D. Hynds , W. Klempt , I. Kremastiotis , J. Kröger , S. Kulis , E. Leogrande , L. Linssen , X. Llopart Cudie , A. Lucaci-Timoce , M. Munker , L. Musa , A. Nürnberg , F. -X. Nuiry , E. Perez Codina , H. Pernegger , M. Petrič , F. Pitters , T. Quast , S. Redford , P. Riedler , P. Roloff , A. Sailer , E. Santin , U. Schnoor , E. Sicking , K. Sielewicz , R. Simoniello , W. Snoeys , S. Spannagel , S. Sroka , R. Ström , P. Valerio , S. van Dam , E. van der Kraaij , T. Vǎnát , O. Viazlo , M. Vicente Barreto Pinto , M. A. Weber , M. Williams , K. Wolters , M. Benoit , G. Iacobucci , D M S Sultan , R. R. Bosley , T. Price , M. F. Watson , N. K. Watson , A. G. Winter , J. Goldstein , S. Green , J. S. Marshall , M. A. Thomson , B. Xu , G. Casse , J. Vossebeld , T. Coates , F. Salvatore , J. Repond , L. Xia , C. Kenney , A. Tomada

CERN has recently launched the Future Circular Collider (FCC) study to deal with all aspects of an ambitious post-LHC possible programme. The emphasis of the study is on a 100 TeV proton collider to be housed in a 80-100 km new ring in the…

Accelerator Physics · Physics 2014-11-12 M. Koratzinos

The Compact Linear Collider, CLIC, is a proposed e$^+$e$^-$ collider at the TeV scale whose physics potential ranges from high-precision measurements to extensive direct sensitivity to physics beyond the Standard Model. This document…

High Energy Physics - Experiment · Physics 2018-12-20 P. Roloff , R. Franceschini , U. Schnoor , A. Wulzer

The Future Circular Collider (FCC) study was launched as a world-wide international collaboration hosted by CERN. Its goal is to push the field to the next energy frontier beyond LHC, increasing by an order of magnitude the mass of…

This paper discusses recently proposed Higgs Energy LEptoN (HELEN) $e+e-$ linear collider based on advances in superconducting radio frequency technology. The collider offers cost and AC power savings, smaller footprint (relative to the…

Now that the mass of the Higgs boson is known, circular electron positron colliders, able to measure the properties of these particles with high accuracy, are receiving considerable attention. Design studies have been launched (i) at CERN…

High Energy Physics - Experiment · Physics 2014-11-21 Manqi Ruan

High-energy collider physics in the next decade will be dominated by the LHC, whose high-luminosity incarnation will take Higgs measurements and new particle searches to the next level. Several high-energy e+ e- colliders are being…

High Energy Physics - Phenomenology · Physics 2018-10-29 John Ellis

The post-linac energy collimation system of multi-TeV linear colliders is designed to fulfil an important function of protection of the Beam Delivery System (BDS) against miss-steered beams likely generated by failure modes in the main…

Accelerator Physics · Physics 2011-12-22 Javier Resta-Lopez

We present a detailed study of the six-dimensional phase space of the electron beam produced by the Cornell Energy Recovery Linac Photoinjector, a high-brightness, high repetition rate (1.3 GHz) DC photoemission source designed to drive a…

An unprecedented positron average current is required to fit the luminosity demands of future $e^+e^-$ high energy physics colliders. In addition, in order to access precision-frontier physics, these machines require positron polarization…

The proposed Circular Electron Positron Collider (CEPC), with a center-of-mass energy $\sqrt{s} = 240$ GeV, will primarily serve as a Higgs factory. At the same time, it can offer good opportunities to search for new physics phenomena at…

High Energy Physics - Experiment · Physics 2022-01-26 Jia-Rong Yuan , Hua-Jie Cheng , Xu-Ai Zhuang