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The Super Tau-Charm Facility (STCF) is a new-generation $e^+e^-$ collider proposed in China, designed to operate in the center-of-mass (CoM) energy range of 2-7 GeV. To achieve the design luminosity exceeding 5*10^34 cm^-2s^-1 at the…

Accelerator Physics · Physics 2025-11-03 Linhao Zhang , Tao Liu , Ye Zou , Penghui Yang , Demin Zhou , Jiancong Bao , Ze Yu , Yuhan Jin , Yihao Mo , Sangya Li , Tianlong He , Qing Luo , Jingyu Tang

The Super Tau-Charm Facility (STCF), China's next-generation electron-positron collider, targets an unprecedented luminosity exceeding 5x10^34 cm^-2 s^-1 at a center-of-mass energy of 4 GeV. The implementation of a submillimeter vertical…

The Super Tau-Charm Facility (STCF) is a proposed high-luminosity electron-positron collider operating in the beam energy range of 1-3.5 GeV, targeting a peak luminosity larger than $0.5\times10^{35}\ \mathrm{cm^{-2}s^{-1}}$ at 2 GeV. In…

Accelerator Physics · Physics 2026-05-19 Tao Liu , Anton Bogomyagkov , Demin Zhou , Penghui Yang , Sangya Li , Linhao Zhang , Ye Zou , Jingyu Tang , Qing Luo

Electron-positron colliders operating in the GeV region of center-of-mass energies or the Tau-Charm energy region, have been proven to enable competitive frontier research, due to its several unique features. With the progress of high…

The Super $\tau$-Charm facility (STCF) is an electron-positron collider proposed by the Chinese particle physics community. It is designed to operate in a center-of-mass energy range from 2 to 7 GeV with a peak luminosity of $0.5\times…

High Energy Physics - Experiment · Physics 2024-05-24 M. Achasov , X. C. Ai , R. Aliberti , L. P. An , Q. An , X. Z. Bai , Y. Bai , O. Bakina , A. Barnyakov , V. Blinov , V. Bobrovnikov , D. Bodrov , A. Bogomyagkov , A. Bondar , I. Boyko , Z. H. Bu , F. M. Cai , H. Cai , J. J. Cao , Q. H. Cao , Z. Cao , Q. Chang , K. T. Chao , D. Y. Chen , H. Chen , H. X. Chen , J. F. Chen , K. Chen , L. L. Chen , P. Chen , S. L. Chen , S. M. Chen , S. Chen , S. P. Chen , W. Chen , X. F. Chen , X. Chen , Y. Chen , Y. Q. Chen , H. Y. Cheng , J. Cheng , S. Cheng , J. P. Dai , L. Y. Dai , X. C. Dai , D. Dedovich , A. Denig , I. Denisenko , D. Z. Ding , L. Y. Dong , W. H. Dong , V. Druzhinin , D. S. Du , Y. J. Du , Z. G. Du , L. M. Duan , D. Epifanov , Y. L. Fan , S. S. Fang , Z. J. Fang , G. Fedotovich , C. Q. Feng , X. Feng , Y. T. Feng , J. L. Fu , J. Gao , P. S. Ge , C. Q. Geng , L. S. Geng , A. Gilman , L. Gong , T. Gong , W. Gradl , J. L. Gu , A. G. Escalante , L. C. Gui , F. K. Guo , J. C. Guo , J. Guo , Y. P. Guo , Z. H. Guo , A. Guskov , K. L. Han , L. Han , M. Han , X. Q. Hao , J. B. He , S. Q. He , X. G. He , Y. L. He , Z. B. He , Z. X. Heng , B. L. Hou , T. J. Hou , Y. R. Hou , C. Y. Hu , H. M. Hu , K. Hu , R. J. Hu , X. H. Hu , Y. C. Hu , J. Hua , G. S. Huang , J. S. Huang , M. Huang , Q. Y. Huang , W. Q. Huang , X. T. Huang , X. J. Huang , Y. B. Huang , Y. S. Huang , N. Hüsken , V. Ivanov , Q. P. Ji , J. J. Jia , S. Jia , Z. K. Jia , H. B. Jiang , J. Jiang , S. Z. Jiang , J. B. Jiao , Z. Jiao , H. J. Jing , X. L. Kang , X. S. Kang , B. C. Ke , M. Kenzie , A. Khoukaz , I. Koop , E. Kravchenko , A. Kuzmin , Y. Lei , E. Levichev , C. H. Li , C. Li , D. Y. Li , F. Li , G. Li , G. Li , H. B. Li , H. Li , H. N. Li , H. J. Li , H. L. Li , J. M. Li , J. Li , L. Li , L. Li , L. Y. Li , N. Li , P. R. Li , R. H. Li , S. Li , T. Li , W. J. Li , X. H. Li , X. Q. Li , X. H. Li , Y. Li , Y. Y. Li , Z. J. Li , H. Liang , J. H. Liang , G. R. Liao , L. Z. Liao , Y. Liao , C. X. Lin , X. S. Lin , B. J. Liu , C. W. Liu , D. Liu , F. Liu , G. M. Liu , H. B. Liu , J. Liu , J. J. Liu , J. B. Liu , K. Liu , K. Y. Liu , K. Liu , L. Liu , Q. Liu , S. B. Liu , T. Liu , X. Liu , Y. W. Liu , Y. Liu , Y. L. Liu , Z. Q. Liu , Z. Y. Liu , Z. W. Liu , I. Logashenko , Y. Long , C. G. Lu , N. Lu , Q. F. Lü , Y. Lu , Y. Lu , Z. Lv , P. Lukin , F. J. Luo , T. Luo , X. F. Luo , H. J. Lyu , X. R. Lyu , J. P. Ma , P. Ma , Y. Ma , F. Maas , S. Malde , D. Matvienko , Z. X. Meng , R. Mitchell , J. M. Dias , A. Nefediev , Y. Nefedov , S. L. Olsen , Q. Ouyang , P. Pakhlov , G. Pakhlova , X. Pan , Y. Pan , E. Passemar , Y. P. Pei , H. P. Peng , L. Peng , X. Y. Peng , X. J. Peng , K. Peters , S. Pivovarov , E. Pyata , B. B. Qi , Y. Q. Qi , W. B. Qian , Y. Qian , C. F. Qiao , J. J. Qin , J. J. Qin , L. Q. Qin , X. S. Qin , T. L. Qiu , J. Rademacker , C. F. Redmer , H. Y. Sang , M. Saur , W. Shan , X. Y. Shan , L. L. Shang , M. Shao , L. Shekhtman , C. P. Shen , J. M. Shen , Z. T. Shen , H. C. Shi , X. D. Shi , B. Shwartz , A. Sokolov , J. J. Song , W. M. Song , Y. Song , Y. X. Song , A. Sukharev , J. F. Sun , L. Sun , X. M. Sun , Y. J. Sun , Z. P. Sun , J. Tang , S. S. Tang , Z. B. Tang , C. H. Tian , J. S. Tian , Y. Tikhonov , K. Todyshev , T. Uglov , V. Vorobyev , B. D. Wan , B. L. Wang , B. Wang , D. Y. Wang , G. Y. Wang , G. L. Wang , H. L. Wang , J. Wang , J. H. Wang , J. C. Wang , M. L. Wang , R. Wang , S. B. Wang , W. Wang , W. P. Wang , X. C. Wang , X. D. Wang , X. L. Wang , X. L. Wang , X. P. Wang , X. F. Wang , Y. D. Wang , Y. P. Wang , Y. Q. Wang , Y. L. Wang , Y. G. Wang , Z. Y. Wang , Z. Y. Wang , Z. L. Wang , Z. G. Wang , D. H. Wei , X. L. Wei , X. M. Wei , Q. G. Wen , X. J. Wen , G. Wilkinson , B. Wu , J. J. Wu , L. Wu , P. W. Wu , T. W. Wu , Y. S. Wu , L. Xia , T. Xiang , C. W. Xiao , D. Xiao , M. Xiao , Y. H. Xie , Y. Xing , Z. Z. Xing , X. N. Xiong , F. R. Xu , J. Xu , L. L. Xu , Q. N. Xu , X. C. Xu , X. P. Xu , Y. C. Xu , Y. P. Xu , Y. Xu , Z. Z. Xu , D. W. Xuan , F. F. Xue , L. Yan , M. J. Yan , W. B. Yan , W. C. Yan , X. S. Yan , B. F. Yang , C. Yang , H. J. Yang , H. R. Yang , H. T. Yang , J. F. Yang , S. L. Yang , Y. D. Yang , Y. H. Yang , Y. S. Yang , Y. L. Yang , Z. Y. Yang , D. L. Yao , H. Yin , X. H. Yin , N. Yokozaki , S. Y. You , Z. Y. You , C. X. Yu , F. S. Yu , G. L. Yu , H. L. Yu , J. S. Yu , J. Q. Yu , L. Yuan , X. B. Yuan , Y. F. Yue , M. Zeng , S. Zeng , A. L. Zhang , B. W. Zhang , G. Y. Zhang , G. Q. Zhang , H. J. Zhang , H. B. Zhang , J. Y. Zhang , J. L. Zhang , J. Zhang , L. Zhang , L. M. Zhang , R. Zhang , S. L. Zhang , T. Zhang , X. Zhang , Y. Zhang , Y. X. Zhang , Y. T. Zhang , Y. F. Zhang , Y. C. Zhang , Y. Zhang , Y. Zhang , Y. M. Zhang , Y. L. Zhang , Z. H. Zhang , Z. Y. Zhang , Z. Y. Zhang , H. Y. Zhao , J. Zhao , L. Zhao , M. G. Zhao , Q. Zhao , R. G. Zhao , R. P. Zhao , Z. G. Zhao , Z. X. Zhao , A. Zhemchugov , B. Zheng , L. Zheng , Q. B. Zheng , R. Zheng , Y. H. Zheng , X. H. Zhong , H. J. Zhou , H. Q. Zhou , H. Zhou , S. H. Zhou , X. Zhou , X. K. Zhou , X. R. Zhou , Y. L. Zhou , Y. Zhou , Y. X. Zhou , Z. Y. Zhou , J. Y. Zhu , K. Zhu , R. D. Zhu , R. L. Zhu , S. H. Zhu , Y. C. Zhu , Z. A. Zhu , V. Zhukova , V. Zhulanov , B. S. Zou , Y. B. Zuo

A Super Tau Charm Facility (STCF) is one of the major options for the accelerator-based high energy project in China in the post-BEPCII era, and its R\&D program is underway. The proposed STCF will span center of mass energies ($\sqrt{s}$)…

Instrumentation and Detectors · Physics 2021-03-22 Xiao-Dong Shi , Xiao-Rong Zhou , Xiao-Shuai Qin , Hai-Ping Peng

The Super Tau-Charm Facility (STCF) is a future electron-positron collider proposed in China with a peak luminosity of above 0.5$\times$10$^{35}$ cm$^{-2}$s$^{-1}$ and center-of-mass energy ranging from 2 to 7 GeV. An excellent particle…

Instrumentation and Detectors · Physics 2021-09-01 Binbin Qi , Ziwei Li , Ming Shao , Jianbei Liu , Zhujun Fang , Huangchao Shi , Xin Li

The proposed Super Tau-Charm Facility (STCF) is an electron-positron collider designed to operate in a center-of-mass energy range from 2 to 7 GeV. It provides a unique platform for physics research in the tau-charm energy region. To…

High Energy Physics - Experiment · Physics 2024-12-20 Hang Zhou , Kexin Sun , Zhenna Lu , Hao Li , Xiaocong Ai , Jin Zhang , Xingtao Huang , Jianbei Liu

Within the framework of quantum field theory and the Standard Model (SM), we investigate the prospects of studying entanglement measures and Bell-type spin-correlation observables in the electroweak process $e^- e^+\to \tau^-\tau^+$ at the…

High Energy Physics - Phenomenology · Physics 2026-03-09 Beizhi Yang , Yu Zhang , Zeren Simon Wang , Xiaorong Zhou

The Super Tau-Charm Facility (STCF) is a proposed $e^+e^-$ collider with a peak luminosity 100 times higher than that of the present tau-charm factory. The inner tracker (ITK) of STCF should feature a low material budget and high readout…

Super tau-Charm facility(STCF) is a future electron-position collider operating at tau-Charm energy region aimed to study hadron structure and spectroscopy. The baseline design of the STCF barrel particle identification(PID) detector in the…

Instrumentation and Detectors · Physics 2023-05-03 Ping Li , Qian Liu , Jianbei Liu , Ming Shao , Zhiyong Zhang , Jianxin Feng , Anqi Wang , Baolin Hou , Lei Zhao , Hongbang Liu

Design studies for a Super Flavor Factory (SFF), an asymmetric energy e+e- collider utilizing International Linear Collider (ILC) techniques and technology, are in progress. The capablity to run at center-of-mass energies near 3.770 GeV…

High Energy Physics - Experiment · Physics 2008-11-26 David M. Asner

As the second stage of the CEPC-SPPC project, SPPC (Super Proton-Proton Collider) aims at exploring new physics beyond the Standard Model. The key design goal for the SPPC accelerator complex is to reach 75 TeV in center of mass energy with…

Accelerator Physics · Physics 2021-04-28 L. H. Zhang , J. Y. Tang , Y. Hong , Y. K. Chen , L. J. Wang

The Super Tau Charm Facility (STCF) is a proposed electron-positron collider working at $\sqrt{s}=2\sim 7$ GeV, and the peak luminosity is designed to be above $0.5 \times 10^{35}cm^{-2}s^{-1}$. The huge amount of scientific data brings…

Instrumentation and Detectors · Physics 2023-06-21 W. H. Huang , H. Li , H. Zhou , T. Li , Q. Y. Li , X. T. Huang

A high peak current, flat longitudinal phase space electron beam is desirable for efficient x-ray free electron laser (FEL) radiation in next generation light sources. To attain such a beam requires the extensive design of the linear…

Accelerator Physics · Physics 2019-10-23 Ji Qiang

A Super Proton-Proton Collider (SPPC) that aims to explore new physics beyond the standard model will be built in China. Here we focus on the impact of beam-beam interactions in the SPPC. Simulations show that with the current optics and…

Accelerator Physics · Physics 2019-12-09 Lijiao Wang , Jingyu Tang , Tanaji Sen

We study the morphology of the main drift chamber (MDC) to be built around the collision point of the proposed Super tau-charm facility (STCF), to check its suitability for discovering the 17 MeV protophobic boson (X17 boson), hypothesised…

High Energy Physics - Phenomenology · Physics 2026-05-29 Althaf M. , Triparno Bandyopadhyay

In storage-ring-based light sources, harmonic cavities are commonly employed to lengthen the bunch, thereby mitigating collective effects and increasing beam lifetime. While this dual-RF configuration provides important benefits, it also…

Accelerator Physics · Physics 2026-05-28 Chao Li , Yong-Chul Chae , Sven Pfeiffer , Chris Christou

In this paper, three specific scenarios of a novel accelerator light source mechanism called steady-state micro-bunching (SSMB) have been studied, i.e., longitudinal weak focusing, longitudinal strong focusing and generalized longitudinal…

Accelerator Physics · Physics 2024-12-10 Xiujie Deng , Alexander Wu Chao , Wenhui Huang , Zizheng Li , Zhilong Pan , Chuanxiang Tang

In a recent funded Key Project of National Science Foundation of China, we have planned to do large scale simulations of lattice Quantum Chromodynamics, using the parallel supercomputing facilities in mainland China. Here I briefly review…

High Energy Physics - Lattice · Physics 2009-11-10 Xiang-Qian Luo
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