Standard

STCF conceptual design report (Volume 1): Physics & detector. / Achasov, M.; Ai, X. C.; An, L. P. et al.

In: Frontiers of Physics, Vol. 19, No. 1, 14701, 02.2024.

Research output: Contribution to journalArticlepeer-review

Harvard

Achasov, M, Ai, XC, An, LP, Aliberti, R, An, Q, Bai, XZ, Bai, Y, Bakina, O, Barnyakov, A, Blinov, V, Bobrovnikov, V, Bodrov, D, Bogomyagkov, A, Bondar, A, Boyko, I, Bu, ZH, Cai, FM, Cai, H, Cao, JJ, Cao, QH, Cao, X, Cao, Z, Chang, Q, Chao, KT, Chen, DY, Chen, H, Chen, HX, Chen, JF, Chen, K, Chen, LL, Chen, P, Chen, SL, Chen, SM, Chen, S, Chen, SP, Chen, W, Chen, X, Chen, XF, Chen, XR, Chen, Y, Chen, YQ, Cheng, HY, Cheng, J, Cheng, S, Cheng, TG, Dai, JP, Dai, LY, Dai, XC, Dedovich, D, Denig, A, Denisenko, I, Dias, JM, Ding, DZ, Dong, LY, Dong, WH, Druzhinin, V, Du, DS, Du, YJ, Du, ZG, Duan, LM, Epifanov, D, Fan, YL, Fang, SS, Fang, ZJ, Fedotovich, G, Feng, CQ, Feng, X, Feng, YT, Fu, JL, Gao, J, Gao, YN, Ge, PS, Geng, CQ, Geng, LS, Gilman, A, Gong, L, Gong, T, Gou, B, Gradl, W, Gu, JL, Guevara, A, Gui, LC, Guo, AQ, Guo, FK, Guo, JC, Guo, J, Guo, YP, Guo, ZH, Guskov, A, Han, KL, Han, L, Han, M, Hao, XQ, He, JB, He, SQ, He, XG, He, YL, He, ZB, Heng, ZX, Hou, BL, Hou, TJ, Hou, YR, Hu, CY, Hu, HM, Hu, K, Hu, RJ, Hu, WH, Hu, XH, Hu, YC, Hua, J, Huang, GS, Huang, JS, Huang, M, Huang, QY, Huang, WQ, Huang, XT, Huang, XJ, Huang, YB, Huang, YS, Hüsken, N, Ivanov, V, Ji, QP, Jia, JJ, Jia, S, Jia, ZK, Jiang, HB, Jiang, J, Jiang, SZ, Jiao, JB, Jiao, Z, Jing, HJ, Kang, XL, Kang, XS, Ke, BC, Kenzie, M, Khoukaz, A, Koop, I, Kravchenko, E, Kuzmin, A, Lei, Y, Levichev, E, Li, CH, Li, C, Li, DY, Li, F, Li, G, Li, G, Li, HB, Li, H, Li, HN, Li, HJ, Li, HL, Li, JM, Li, J, Li, L, Li, L, Li, LY, Li, N, Li, PR, Li, RH, Li, S, Li, T, Li, WJ, Li, X, Li, XH, Li, XQ, Li, XH, Li, Y, Li, YY, Li, ZJ, Liang, H, Liang, JH, Liang, YT, Liao, GR, Liao, LZ, Liao, Y, Lin, CX, Lin, DX, Lin, XS, Liu, BJ, Liu, CW, Liu, D, Liu, F, Liu, GM, Liu, HB, Liu, JJ, Liu, JJ, Liu, JB, Liu, K, Liu, KY, Liu, K, Liu, L, Liu, Q, Liu, SB, Liu, T, Liu, X, Liu, YW, Liu, Y, Liu, YL, Liu, ZQ, Liu, ZY, Liu, ZW, Logashenko, I, Long, Y, Lu, CG, Lu, JX, Lu, N, Lü, QF, Lu, Y, Lu, Y, Lu, Z, Lukin, P, Luo, FJ, Luo, T, Luo, XF, Lyu, HJ, Lyu, XR, Ma, JP, Ma, P, Ma, Y, Ma, YM, Maas, F, Malde, S, Matvienko, D, Meng, ZX, Mitchell, R, Nefediev, A, Nefedov, Y, Olsen, SL, Ouyang, Q, Pakhlov, P, Pakhlova, G, Pan, X, Pan, Y, Passemar, E, Pei, YP, Peng, HP, Peng, L, Peng, XY, Peng, XJ, Peters, K, Pivovarov, S, Pyata, E, Qi, BB, Qi, YQ, Qian, WB, Qian, Y, Qiao, CF, Qin, JJ, Qin, JJ, Qin, LQ, Qin, XS, Qiu, TL, Rademacker, J, Redmer, CF, Sang, HY, Saur, M, Shan, W, Shan, XY, Shang, LL, Shao, M, Shekhtman, L, Shen, CP, Shen, JM, Shen, ZT, Shi, HC, Shi, XD, Shwartz, B, Sokolov, A, Song, JJ, Song, WM, Song, Y, Song, YX, Sukharev, A, Sun, JF, Sun, L, Sun, XM, Sun, YJ, Sun, ZP, Tang, J, Tang, SS, Tang, ZB, Tian, CH, Tian, JS, Tian, Y, Tikhonov, Y, Todyshev, K, Uglov, T, Vorobyev, V, Wan, BD, Wang, BL, Wang, B, Wang, YD, Wang, GY, Wang, GL, Wang, HL, Wang, J, Wang, JH, Wang, JC, Wang, ML, Wang, R, Wang, R, Wang, SB, Wang, W, Wang, WP, Wang, XC, Wang, XD, Wang, XL, Wang, XL, Wang, XP, Wang, XF, Wang, YD, Wang, YP, Wang, YQ, Wang, YL, Wang, YG, Wang, ZY, Wang, ZY, Wang, ZL, Wang, ZG, Wei, DH, Wei, XL, Wei, XM, Wen, QG, Wen, XJ, Wilkinson, G, Wu, B, Wu, JJ, Wu, L, Wu, P, Wu, TW, Wu, YS, Xia, L, Xiang, T, Xiao, CW, Xiao, D, Xiao, M, Xie, KP, Xie, YH, Xing, Y, Xing, ZZ, Xiong, XN, Xu, FR, Xu, J, Xu, LL, Xu, QN, Xu, XC, Xu, XP, Xu, YC, Xu, YP, Xu, Y, Xu, ZZ, Xuan, DW, Xue, FF, Yan, L, Yan, MJ, Yan, WB, Yan, WC, Yan, XS, Yang, BF, Yang, C, Yang, HJ, Yang, HR, Yang, HT, Yang, JF, Yang, SL, Yang, YD, Yang, YH, Yang, YS, Yang, YL, Yang, ZW, Yang, ZY, Yao, DL, Yin, H, Yin, XH, Yokozaki, N, You, SY, You, ZY, Yu, CX, Yu, FS, Yu, GL, Yu, HL, Yu, JS, Yu, JQ, Yuan, L, Yuan, XB, Yuan, ZY, Yue, YF, Zeng, M, Zeng, S, Zhang, AL, Zhang, BW, Zhang, GY, Zhang, GQ, Zhang, HJ, Zhang, HB, Zhang, JY, Zhang, JL, Zhang, J, Zhang, L, Zhang, LM, Zhang, QA, Zhang, R, Zhang, SL, Zhang, T, Zhang, X, Zhang, Y, Zhang, YJ, Zhang, YX, Zhang, YT, Zhang, YF, Zhang, YC, Zhang, Y, Zhang, Y, Zhang, YM, Zhang, YL, Zhang, ZH, Zhang, ZY, Zhang, ZY, Zhao, HY, Zhao, J, Zhao, L, Zhao, MG, Zhao, Q, Zhao, RG, Zhao, RP, Zhao, YX, Zhao, ZG, Zhao, ZX, Zhemchugov, A, Zheng, B, Zheng, L, Zheng, QB, Zheng, R, Zheng, YH, Zhong, XH, Zhou, HJ, Zhou, HQ, Zhou, H, Zhou, SH, Zhou, X, Zhou, XK, Zhou, XP, Zhou, XR, Zhou, YL, Zhou, Y, Zhou, YX, Zhou, ZY, Zhu, JY, Zhu, K, Zhu, RD, Zhu, RL, Zhu, SH, Zhu, YC, Zhu, ZA, Zhukova, V, Zhulanov, V, Zou, BS & Zuo, YB 2024, 'STCF conceptual design report (Volume 1): Physics & detector', Frontiers of Physics, vol. 19, no. 1, 14701. https://doi.org/10.1007/s11467-023-1333-z

APA

Achasov, M., Ai, X. C., An, L. P., Aliberti, R., An, Q., Bai, X. Z., Bai, Y., Bakina, O., Barnyakov, A., Blinov, V., Bobrovnikov, V., Bodrov, D., Bogomyagkov, A., Bondar, A., Boyko, I., Bu, Z. H., Cai, F. M., Cai, H., Cao, J. J., ... Zuo, Y. B. (2024). STCF conceptual design report (Volume 1): Physics & detector. Frontiers of Physics, 19(1), [14701]. https://doi.org/10.1007/s11467-023-1333-z

Vancouver

Achasov M, Ai XC, An LP, Aliberti R, An Q, Bai XZ et al. STCF conceptual design report (Volume 1): Physics & detector. Frontiers of Physics. 2024 Feb;19(1):14701. doi: 10.1007/s11467-023-1333-z

Author

Achasov, M. ; Ai, X. C. ; An, L. P. et al. / STCF conceptual design report (Volume 1): Physics & detector. In: Frontiers of Physics. 2024 ; Vol. 19, No. 1.

BibTeX

@article{e2a7cf36226643f8a6b547a637f60667,
title = "STCF conceptual design report (Volume 1): Physics & detector",
abstract = "The super τ-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 × 1035 cm−2·s−1 or higher. The STCF will produce a data sample about a factor of 100 larger than that of the present τ-charm factory — the BEPCII, providing a unique platform for exploring the asymmetry of matter-antimatter (charge-parity violation), in-depth studies of the internal structure of hadrons and the nature of non-perturbative strong interactions, as well as searching for exotic hadrons and physics beyond the Standard Model. The STCF project in China is under development with an extensive R&D program. This document presents the physics opportunities at the STCF, describes conceptual designs of the STCF detector system, and discusses future plans for detector R&D and physics case studies.",
keywords = "STCF detector, conceptual design, electron–positron collider, high luminosity, tau-charm region",
author = "M. Achasov and Ai, {X. C.} and An, {L. P.} and R. Aliberti and Q. An and Bai, {X. Z.} and Y. Bai and O. Bakina and A. Barnyakov and V. Blinov and V. Bobrovnikov and D. Bodrov and A. Bogomyagkov and A. Bondar and I. Boyko and Bu, {Z. H.} and Cai, {F. M.} and H. Cai and Cao, {J. J.} and Cao, {Q. H.} and X. Cao and Z. Cao and Q. Chang and Chao, {K. T.} and Chen, {D. Y.} and H. Chen and Chen, {H. X.} and Chen, {J. F.} and K. Chen and Chen, {L. L.} and P. Chen and Chen, {S. L.} and Chen, {S. M.} and S. Chen and Chen, {S. P.} and W. Chen and X. Chen and Chen, {X. F.} and Chen, {X. R.} and Y. Chen and Chen, {Y. Q.} and Cheng, {H. Y.} and J. Cheng and S. Cheng and Cheng, {T. G.} and Dai, {J. P.} and Dai, {L. Y.} and Dai, {X. C.} and D. Dedovich and A. Denig and I. Denisenko and Dias, {J. M.} and Ding, {D. Z.} and Dong, {L. Y.} and Dong, {W. H.} and V. Druzhinin and Du, {D. S.} and Du, {Y. J.} and Du, {Z. G.} and Duan, {L. M.} and D. Epifanov and Fan, {Y. L.} and Fang, {S. S.} and Fang, {Z. J.} and G. Fedotovich and Feng, {C. Q.} and X. Feng and Feng, {Y. T.} and Fu, {J. L.} and J. Gao and Gao, {Y. N.} and Ge, {P. S.} and Geng, {C. Q.} and Geng, {L. S.} and A. Gilman and L. Gong and T. Gong and B. Gou and W. Gradl and Gu, {J. L.} and A. Guevara and Gui, {L. C.} and Guo, {A. Q.} and Guo, {F. K.} and Guo, {J. C.} and J. Guo and Guo, {Y. P.} and Guo, {Z. H.} and A. Guskov and Han, {K. L.} and L. Han and M. Han and Hao, {X. Q.} and He, {J. B.} and He, {S. Q.} and He, {X. G.} and He, {Y. L.} and He, {Z. B.} and Heng, {Z. X.} and Hou, {B. L.} and Hou, {T. J.} and Hou, {Y. R.} and Hu, {C. Y.} and Hu, {H. M.} and K. Hu and Hu, {R. J.} and Hu, {W. H.} and Hu, {X. H.} and Hu, {Y. C.} and J. Hua and Huang, {G. S.} and Huang, {J. S.} and M. Huang and Huang, {Q. Y.} and Huang, {W. Q.} and Huang, {X. T.} and Huang, {X. J.} and Huang, {Y. B.} and Huang, {Y. S.} and N. H{\"u}sken and V. Ivanov and Ji, {Q. P.} and Jia, {J. J.} and S. Jia and Jia, {Z. K.} and Jiang, {H. B.} and J. Jiang and Jiang, {S. Z.} and Jiao, {J. B.} and Z. Jiao and Jing, {H. J.} and Kang, {X. L.} and Kang, {X. S.} and Ke, {B. C.} and M. Kenzie and A. Khoukaz and I. Koop and E. Kravchenko and A. Kuzmin and Y. Lei and E. Levichev and Li, {C. H.} and C. Li and Li, {D. Y.} and F. Li and G. Li and G. Li and Li, {H. B.} and H. Li and Li, {H. N.} and Li, {H. J.} and Li, {H. L.} and Li, {J. M.} and J. Li and L. Li and L. Li and Li, {L. Y.} and N. Li and Li, {P. R.} and Li, {R. H.} and S. Li and T. Li and Li, {W. J.} and X. Li and Li, {X. H.} and Li, {X. Q.} and Li, {X. H.} and Y. Li and Li, {Y. Y.} and Li, {Z. J.} and H. Liang and Liang, {J. H.} and Liang, {Y. T.} and Liao, {G. R.} and Liao, {L. Z.} and Y. Liao and Lin, {C. X.} and Lin, {D. X.} and Lin, {X. S.} and Liu, {B. J.} and Liu, {C. W.} and D. Liu and F. Liu and Liu, {G. M.} and Liu, {H. B.} and Liu, {J. J.} and Liu, {J. J.} and Liu, {J. B.} and K. Liu and Liu, {K. Y.} and K. Liu and L. Liu and Q. Liu and Liu, {S. B.} and T. Liu and X. Liu and Liu, {Y. W.} and Y. Liu and Liu, {Y. L.} and Liu, {Z. Q.} and Liu, {Z. Y.} and Liu, {Z. W.} and I. Logashenko and Y. Long and Lu, {C. G.} and Lu, {J. X.} and N. Lu and L{\"u}, {Q. F.} and Y. Lu and Y. Lu and Z. Lu and P. Lukin and Luo, {F. J.} and T. Luo and Luo, {X. F.} and Lyu, {H. J.} and Lyu, {X. R.} and Ma, {J. P.} and P. Ma and Y. Ma and Ma, {Y. M.} and F. Maas and S. Malde and D. Matvienko and Meng, {Z. X.} and R. Mitchell and A. Nefediev and Y. Nefedov and Olsen, {S. L.} and Q. Ouyang and P. Pakhlov and G. Pakhlova and X. Pan and Y. Pan and E. Passemar and Pei, {Y. P.} and Peng, {H. P.} and L. Peng and Peng, {X. Y.} and Peng, {X. J.} and K. Peters and S. Pivovarov and E. Pyata and Qi, {B. B.} and Qi, {Y. Q.} and Qian, {W. B.} and Y. Qian and Qiao, {C. F.} and Qin, {J. J.} and Qin, {J. J.} and Qin, {L. Q.} and Qin, {X. S.} and Qiu, {T. L.} and J. Rademacker and Redmer, {C. F.} and Sang, {H. Y.} and M. Saur and W. Shan and Shan, {X. Y.} and Shang, {L. L.} and M. Shao and L. Shekhtman and Shen, {C. P.} and Shen, {J. M.} and Shen, {Z. T.} and Shi, {H. C.} and Shi, {X. D.} and B. Shwartz and A. Sokolov and Song, {J. J.} and Song, {W. M.} and Y. Song and Song, {Y. X.} and A. Sukharev and Sun, {J. F.} and L. Sun and Sun, {X. M.} and Sun, {Y. J.} and Sun, {Z. P.} and J. Tang and Tang, {S. S.} and Tang, {Z. B.} and Tian, {C. H.} and Tian, {J. S.} and Y. Tian and Y. Tikhonov and K. Todyshev and T. Uglov and V. Vorobyev and Wan, {B. D.} and Wang, {B. L.} and B. Wang and Wang, {Y. D.} and Wang, {G. Y.} and Wang, {G. L.} and Wang, {H. L.} and J. Wang and Wang, {J. H.} and Wang, {J. C.} and Wang, {M. L.} and R. Wang and R. Wang and Wang, {S. B.} and W. Wang and Wang, {W. P.} and Wang, {X. C.} and Wang, {X. D.} and Wang, {X. L.} and Wang, {X. L.} and Wang, {X. P.} and Wang, {X. F.} and Wang, {Y. D.} and Wang, {Y. P.} and Wang, {Y. Q.} and Wang, {Y. L.} and Wang, {Y. G.} and Wang, {Z. Y.} and Wang, {Z. Y.} and Wang, {Z. L.} and Wang, {Z. G.} and Wei, {D. H.} and Wei, {X. L.} and Wei, {X. M.} and Wen, {Q. G.} and Wen, {X. J.} and G. Wilkinson and B. Wu and Wu, {J. J.} and L. Wu and P. Wu and Wu, {T. W.} and Wu, {Y. S.} and L. Xia and T. Xiang and Xiao, {C. W.} and D. Xiao and M. Xiao and Xie, {K. P.} and Xie, {Y. H.} and Y. Xing and Xing, {Z. Z.} and Xiong, {X. N.} and Xu, {F. R.} and J. Xu and Xu, {L. L.} and Xu, {Q. N.} and Xu, {X. C.} and Xu, {X. P.} and Xu, {Y. C.} and Xu, {Y. P.} and Y. Xu and Xu, {Z. Z.} and Xuan, {D. W.} and Xue, {F. F.} and L. Yan and Yan, {M. J.} and Yan, {W. B.} and Yan, {W. C.} and Yan, {X. S.} and Yang, {B. F.} and C. Yang and Yang, {H. J.} and Yang, {H. R.} and Yang, {H. T.} and Yang, {J. F.} and Yang, {S. L.} and Yang, {Y. D.} and Yang, {Y. H.} and Yang, {Y. S.} and Yang, {Y. L.} and Yang, {Z. W.} and Yang, {Z. Y.} and Yao, {D. L.} and H. Yin and Yin, {X. H.} and N. Yokozaki and You, {S. Y.} and You, {Z. Y.} and Yu, {C. X.} and Yu, {F. S.} and Yu, {G. L.} and Yu, {H. L.} and Yu, {J. S.} and Yu, {J. Q.} and L. Yuan and Yuan, {X. B.} and Yuan, {Z. Y.} and Yue, {Y. F.} and M. Zeng and S. Zeng and Zhang, {A. L.} and Zhang, {B. W.} and Zhang, {G. Y.} and Zhang, {G. Q.} and Zhang, {H. J.} and Zhang, {H. B.} and Zhang, {J. Y.} and Zhang, {J. L.} and J. Zhang and L. Zhang and Zhang, {L. M.} and Zhang, {Q. A.} and R. Zhang and Zhang, {S. L.} and T. Zhang and X. Zhang and Y. Zhang and Zhang, {Y. J.} and Zhang, {Y. X.} and Zhang, {Y. T.} and Zhang, {Y. F.} and Zhang, {Y. C.} and Y. Zhang and Y. Zhang and Zhang, {Y. M.} and Zhang, {Y. L.} and Zhang, {Z. H.} and Zhang, {Z. Y.} and Zhang, {Z. Y.} and Zhao, {H. Y.} and J. Zhao and L. Zhao and Zhao, {M. G.} and Q. Zhao and Zhao, {R. G.} and Zhao, {R. P.} and Zhao, {Y. X.} and Zhao, {Z. G.} and Zhao, {Z. X.} and A. Zhemchugov and B. Zheng and L. Zheng and Zheng, {Q. B.} and R. Zheng and Zheng, {Y. H.} and Zhong, {X. H.} and Zhou, {H. J.} and Zhou, {H. Q.} and H. Zhou and Zhou, {S. H.} and X. Zhou and Zhou, {X. K.} and Zhou, {X. P.} and Zhou, {X. R.} and Zhou, {Y. L.} and Y. Zhou and Zhou, {Y. X.} and Zhou, {Z. Y.} and Zhu, {J. Y.} and K. Zhu and Zhu, {R. D.} and Zhu, {R. L.} and Zhu, {S. H.} and Zhu, {Y. C.} and Zhu, {Z. A.} and V. Zhukova and V. Zhulanov and Zou, {B. S.} and Zuo, {Y. B.}",
note = "We would like to thank Sergey Barsuk (IN2P3-CNRS & Universit{\'e} Paris 11, France), Alexander Bonder (Novosibirsk State University & Budker Institute of Nuclear Physics, Russia), Oliver Callot (IN2P3/CNRS & Universit{\'e} Paris 11, France), Wolfgang K{\"u}hn (Justus-Liebig-Universitaet Giessen, II. Physikalisches Institut, Germany), Cheng Li (University of Science and Technology of China, China), Jin Li (Institute of High Energy Physics, China), Weiguo Li (Institute of High Energy Physics, China), Alexey Petrov (University of South Carolina, USA), Yuri Tikhonov (Budker Institute of Nuclear Physics, Russia), and Changzheng Yuan (Institute of High Energy Physics, China; University of Chinese Academy of Sciences, China) for their reviewing of this report. We would like to thank Andrzej Kupsc (National Centre for Nuclear Research, Poland; Uppsala University, Sweden) for his contribution to this report. We thank the University of Science and Technology of China, the Hefei Comprehensive National Science Center, State Key Laboratory of Particle Detection and Electronics, and National Synchrotron Radiation Laboratory for their strong support. The research work leading to this report was supported by the National Key R&D Program of China under Contract No. 2022YFA1602200, the International Partnership Program of the Chineses Academy of Sciences under Grant No. 211134KYSB20200057 and the STCF Key Technology Research and Development Project. Публикация для корректировки.",
year = "2024",
month = feb,
doi = "10.1007/s11467-023-1333-z",
language = "English",
volume = "19",
journal = "Frontiers of Physics",
issn = "2095-0462",
publisher = "Higher Education Press",
number = "1",

}

RIS

TY - JOUR

T1 - STCF conceptual design report (Volume 1): Physics & detector

AU - Achasov, M.

AU - Ai, X. C.

AU - An, L. P.

AU - Aliberti, R.

AU - An, Q.

AU - Bai, X. Z.

AU - Bai, Y.

AU - Bakina, O.

AU - Barnyakov, A.

AU - Blinov, V.

AU - Bobrovnikov, V.

AU - Bodrov, D.

AU - Bogomyagkov, A.

AU - Bondar, A.

AU - Boyko, I.

AU - Bu, Z. H.

AU - Cai, F. M.

AU - Cai, H.

AU - Cao, J. J.

AU - Cao, Q. H.

AU - Cao, X.

AU - Cao, Z.

AU - Chang, Q.

AU - Chao, K. T.

AU - Chen, D. Y.

AU - Chen, H.

AU - Chen, H. X.

AU - Chen, J. F.

AU - Chen, K.

AU - Chen, L. L.

AU - Chen, P.

AU - Chen, S. L.

AU - Chen, S. M.

AU - Chen, S.

AU - Chen, S. P.

AU - Chen, W.

AU - Chen, X.

AU - Chen, X. F.

AU - Chen, X. R.

AU - Chen, Y.

AU - Chen, Y. Q.

AU - Cheng, H. Y.

AU - Cheng, J.

AU - Cheng, S.

AU - Cheng, T. G.

AU - Dai, J. P.

AU - Dai, L. Y.

AU - Dai, X. C.

AU - Dedovich, D.

AU - Denig, A.

AU - Denisenko, I.

AU - Dias, J. M.

AU - Ding, D. Z.

AU - Dong, L. Y.

AU - Dong, W. H.

AU - Druzhinin, V.

AU - Du, D. S.

AU - Du, Y. J.

AU - Du, Z. G.

AU - Duan, L. M.

AU - Epifanov, D.

AU - Fan, Y. L.

AU - Fang, S. S.

AU - Fang, Z. J.

AU - Fedotovich, G.

AU - Feng, C. Q.

AU - Feng, X.

AU - Feng, Y. T.

AU - Fu, J. L.

AU - Gao, J.

AU - Gao, Y. N.

AU - Ge, P. S.

AU - Geng, C. Q.

AU - Geng, L. S.

AU - Gilman, A.

AU - Gong, L.

AU - Gong, T.

AU - Gou, B.

AU - Gradl, W.

AU - Gu, J. L.

AU - Guevara, A.

AU - Gui, L. C.

AU - Guo, A. Q.

AU - Guo, F. K.

AU - Guo, J. C.

AU - Guo, J.

AU - Guo, Y. P.

AU - Guo, Z. H.

AU - Guskov, A.

AU - Han, K. L.

AU - Han, L.

AU - Han, M.

AU - Hao, X. Q.

AU - He, J. B.

AU - He, S. Q.

AU - He, X. G.

AU - He, Y. L.

AU - He, Z. B.

AU - Heng, Z. X.

AU - Hou, B. L.

AU - Hou, T. J.

AU - Hou, Y. R.

AU - Hu, C. Y.

AU - Hu, H. M.

AU - Hu, K.

AU - Hu, R. J.

AU - Hu, W. H.

AU - Hu, X. H.

AU - Hu, Y. C.

AU - Hua, J.

AU - Huang, G. S.

AU - Huang, J. S.

AU - Huang, M.

AU - Huang, Q. Y.

AU - Huang, W. Q.

AU - Huang, X. T.

AU - Huang, X. J.

AU - Huang, Y. B.

AU - Huang, Y. S.

AU - Hüsken, N.

AU - Ivanov, V.

AU - Ji, Q. P.

AU - Jia, J. J.

AU - Jia, S.

AU - Jia, Z. K.

AU - Jiang, H. B.

AU - Jiang, J.

AU - Jiang, S. Z.

AU - Jiao, J. B.

AU - Jiao, Z.

AU - Jing, H. J.

AU - Kang, X. L.

AU - Kang, X. S.

AU - Ke, B. C.

AU - Kenzie, M.

AU - Khoukaz, A.

AU - Koop, I.

AU - Kravchenko, E.

AU - Kuzmin, A.

AU - Lei, Y.

AU - Levichev, E.

AU - Li, C. H.

AU - Li, C.

AU - Li, D. Y.

AU - Li, F.

AU - Li, G.

AU - Li, G.

AU - Li, H. B.

AU - Li, H.

AU - Li, H. N.

AU - Li, H. J.

AU - Li, H. L.

AU - Li, J. M.

AU - Li, J.

AU - Li, L.

AU - Li, L.

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N1 - We would like to thank Sergey Barsuk (IN2P3-CNRS & Université Paris 11, France), Alexander Bonder (Novosibirsk State University & Budker Institute of Nuclear Physics, Russia), Oliver Callot (IN2P3/CNRS & Université Paris 11, France), Wolfgang Kühn (Justus-Liebig-Universitaet Giessen, II. Physikalisches Institut, Germany), Cheng Li (University of Science and Technology of China, China), Jin Li (Institute of High Energy Physics, China), Weiguo Li (Institute of High Energy Physics, China), Alexey Petrov (University of South Carolina, USA), Yuri Tikhonov (Budker Institute of Nuclear Physics, Russia), and Changzheng Yuan (Institute of High Energy Physics, China; University of Chinese Academy of Sciences, China) for their reviewing of this report. We would like to thank Andrzej Kupsc (National Centre for Nuclear Research, Poland; Uppsala University, Sweden) for his contribution to this report. We thank the University of Science and Technology of China, the Hefei Comprehensive National Science Center, State Key Laboratory of Particle Detection and Electronics, and National Synchrotron Radiation Laboratory for their strong support. The research work leading to this report was supported by the National Key R&D Program of China under Contract No. 2022YFA1602200, the International Partnership Program of the Chineses Academy of Sciences under Grant No. 211134KYSB20200057 and the STCF Key Technology Research and Development Project. Публикация для корректировки.

PY - 2024/2

Y1 - 2024/2

N2 - The super τ-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 × 1035 cm−2·s−1 or higher. The STCF will produce a data sample about a factor of 100 larger than that of the present τ-charm factory — the BEPCII, providing a unique platform for exploring the asymmetry of matter-antimatter (charge-parity violation), in-depth studies of the internal structure of hadrons and the nature of non-perturbative strong interactions, as well as searching for exotic hadrons and physics beyond the Standard Model. The STCF project in China is under development with an extensive R&D program. This document presents the physics opportunities at the STCF, describes conceptual designs of the STCF detector system, and discusses future plans for detector R&D and physics case studies.

AB - The super τ-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 × 1035 cm−2·s−1 or higher. The STCF will produce a data sample about a factor of 100 larger than that of the present τ-charm factory — the BEPCII, providing a unique platform for exploring the asymmetry of matter-antimatter (charge-parity violation), in-depth studies of the internal structure of hadrons and the nature of non-perturbative strong interactions, as well as searching for exotic hadrons and physics beyond the Standard Model. The STCF project in China is under development with an extensive R&D program. This document presents the physics opportunities at the STCF, describes conceptual designs of the STCF detector system, and discusses future plans for detector R&D and physics case studies.

KW - STCF detector

KW - conceptual design

KW - electron–positron collider

KW - high luminosity

KW - tau-charm region

UR - https://www.scopus.com/record/display.uri?eid=2-s2.0-85172432013&origin=inward&txGid=a7e0ddb578bfb34c5bed67a9d3c3c1e1

UR - https://www.mendeley.com/catalogue/6a7e82be-0fbd-3db9-8ca9-b80bbb44f4d8/

U2 - 10.1007/s11467-023-1333-z

DO - 10.1007/s11467-023-1333-z

M3 - Article

VL - 19

JO - Frontiers of Physics

JF - Frontiers of Physics

SN - 2095-0462

IS - 1

M1 - 14701

ER -

ID: 59307913