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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 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 project of Super Tau-Charm Facility (STCF) proposed in China, as a new-generation high-luminosity $e^+e^-$ collider in the low-energy region with the center-of-mass energy of 2-7 GeV, is well underway. The luminosity is targeted at…

Accelerator Physics · Physics 2024-03-04 Linhao Zhang , Tao Liu , Sangya Li , 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

Muon collider is a promising candidate for the next energy frontier machine. However, in order to obtain peak luminosity in the 1035/cm2/s range the collider lattice design must satisfy a number of stringent requirements, such as low beta…

Accelerator Physics · Physics 2012-02-03 Y. Alexahin , E. Gianfelice-Wendt , A. Netepenko

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

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 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…

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

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

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

A beam optics scheme has been designed for the Future Circular Collider-e+e- (FCC-ee). The main characteristics of the design are: beam energy 45 to 175 GeV, 100 km circumference with two interaction points (IPs) per ring, horizontal…

The Future Circular Collider (FCC) study investigates the feasibility of circular colliders in the post-LHC era. The sub-study FCC-ee is a 100 km electron positron collider in the energy range of 90-365 GeV. In order to achieve a design…

Accelerator Physics · Physics 2021-11-30 Bastian Haerer , Tobias Tydecks

An optical lattice is a periodic light crystal constructed from the standing-wave interference patterns of laser beams. It can be used to store and manipulate quantum degenerate atoms and is an ideal platform for the quantum simulation of…

Optics · Physics 2026-02-04 Kendall Mehling , Murray Holland , Catie LeDesma

We discuss the choice of the magnetic lattice and parameter optimization of the fourth generation light source SKIF (Russian acronym for Siberian Circular Photon Source) under construction in Novosibirsk. The study compares several basic…

Accelerator Physics · Physics 2021-07-08 G. Baranov , A. Bogomyagkov , E. Levichev , S. Sinyatkin

Attractive interaction between spinless fermions in a two-dimensional lattice drives the formation of a topological superfluid. But the topological phase is dynamically unstable towards phase separation when the system has a high density of…

Quantum Gases · Physics 2021-10-04 Junhua Zhang , Sumanta Tewari , V. W. Scarola

We present the physical design and systematic optimization of a high-performance storage ring tailored for the generation of high-power coherent radiation, with particular emphasis on the extreme ultraviolet (EUV) regime. The proposed ring…

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

A new concept of nonlinear focusing of colliding bunches, called Crab Waist (CW)collision scheme, has been proposed at LNF INFN. It has been successfully tested at the Italian lepton collider DAFNE in operational conditions providing…

Accelerator Physics · Physics 2016-10-12 Mikhail Zobov
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