• [1]

    CEPC Sᴛᴜᴅʏ Gʀᴏᴜᴘ Collaboration, Radiat. Detect. Technol. Methods 8, 1 (2024), arXiv: 2312.14363

  • [2]

    CEPC Sᴛᴜᴅʏ Gʀᴏᴜᴘ Collaboration, CEPC Conceptual Design Report: Volume 2 - Physics & Detector, arXiv: 1811.10545

  • [3]

    CEPC Aᴄᴄᴇʟᴇʀᴀᴛᴏʀ Sᴛᴜᴅʏ Gʀᴏᴜᴘ Collaboration, Snowmass2021 White Paper AF3-CEPC, arXiv: 2203.09451

  • [4]

    N. Cabibbo, Phys. Rev. Lett. 10, 531 (1963)

  • [5]

    M. Kobayashi and T. Maskawa, Prog. Theor. Phys. 49, 652 (1973)

  • [6]

    F. An et al., Chin. Phys. C 43, 043002 (2019), arXiv: 1810.09037

  • [7]

    Bᴇʟʟᴇ-II Collaboration, PTEP 2019, 123C01 (2019), arXiv: 1808.10567

  • [8]

    LHCʙ Collaboration, Phys. Rev. Lett. 118, 052002 (2017), arXiv: 1612.05140

  • [9]

    LHCʙ Collaboration, Phys. Rev. D 100, 031102 (2019), arXiv: 1902.06794

  • [10]

    Hᴇᴀᴠʏ Fʟᴀᴠᴏʀ Aᴠᴇʀᴀɢɪɴɢ Gʀᴏᴜᴘ, HFLAV Collaboration, Phys. Rev. D 107, 052008 (2023), arXiv: 2206.07501

  • [11]

    LHCʙ Collaboration, Phys. Rev. D 100, 112006 (2019), arXiv: 1910.13404

  • [12]

    X. C. Zheng, C. H. Chang, T. F. Feng et al., Phys. Rev. D 100, 034004 (2019), arXiv: 1901.03477

  • [13]

    L. Gladilin, Eur. Phys. J. C 75, 19 (2015), arXiv: 1404.3888

  • [14]

    DELPHI Collaboration, Z. Phys. C 59, 533 (1993)

  • [15]

    ALEPH Collaboration, Z. Phys. C 62, 1 (1994)

  • [16]

    OPAL Collaboration, Z. Phys. C 67, 27 (1995)

  • [17]

    A. Boehrer, Phys. Rept. 291, 107 (1997)

  • [18]

    M. Achasov et al., Front. Phys. (Beijing) 19, 14701 (2024), arXiv: 2303.15790

  • [19]

    LHCʙ Collaboration, Physics case for an LHCb Upgrade II - Opportunities in flavour physics, and beyond, in the HL-LHC era, arXiv: 1808.08865

  • [20]

    FCC Collaboration, Eur. Phys. J. C 79, 474 (2019)

  • [21]

    G. Bernardi et al., The Future Circular Collider: a Summary for the US 2021 Snowmass Process, arXiv: 2203.06520

  • [22]

    LCC Physics Working Group Collaboration, Tests of the Standard Model at the International Linear Collider, arXiv: 1908.11299

  • [23]

    N. Bacchetta et al., CLD – A Detector Concept for the FCC-ee, arXiv: 1911.12230

  • [24]

    IDEA Collaboration, PoS ICHEP2020, 877 (2021)

  • [25]

    BᴀBᴀʀ Collaboration, Nucl. Instrum. Meth. A 479, 1 (2002), arXiv: hep-ex/0105044

  • [26]

    BESIII Collaboration, Nucl. Instrum. Meth. A 614, 345 (2010), arXiv: 0911.4960

  • [27]

    LHCʙ Collaboration, JINST 3, S08005 (2008)

  • [28]

    ALEPH, CDF, D0, DELPHI, L3, OPAL, SLD, LEP Eʟᴇᴄᴛʀᴏᴡᴇᴀᴋ Wᴏʀᴋɪɴɢ Gʀᴏᴜᴘ, Tᴇᴠᴀᴛʀᴏɴ Eʟᴇᴄᴛʀᴏᴡᴇᴀᴋ Wᴏʀᴋɪɴɢ Gʀᴏᴜᴘ, SLD Eʟᴇᴄᴛʀᴏᴡᴇᴀᴋ Wᴏʀᴋɪɴɢ Gʀᴏᴜᴘ, SLD Hᴇᴀᴠʏ Fʟᴀᴠᴏʀ Gʀᴏᴜᴘ Ccollaboration, Precision Electroweak Measurements and Constraints on the Standard Model, arXiv: 0911.2604

  • [29]

    T. Sjöstrand, S. Ask, J. R. Christiansen et al., Comput. Phys. Commun. 191, 159 (2015), arXiv: 1410.3012

  • [30]

    M. Ruan and H. Videau, Arbor, a new approach of the Particle Flow Algorithm, in International Conference on Calorimetry for the High Energy Frontier, pp. 316–324, (2013), arXiv: 1403.4784

  • [31]

    J. S. Marshall and M. A. Thomson, Pandora Particle Flow Algorithm, in International Conference on Calorimetry for the High Energy Frontier, pp. 305–315, (2013), arXiv: 1308.4537

  • [32]

    Y. Wang, S. Descotes-Genon, O. Deschamps, et al., JHEP 12, 135 (2022), arXiv: 2208.08327

  • [33]

    H. Liang, Y. Zhu, Y. Wang et al., Phys. Rev. Lett. 132, 221802 (2024), arXiv: 2310.03440

  • [34]

    LHCʙ Collaboration, JHEP 10, 037 (2012), arXiv: 1206.2794

  • [35]

    H. Cui, M. Zhao, Y. Wang et al., JHEP 05, 210 (2024), arXiv: 2306.14089

  • [36]

    L. Li, M. Ruan, Y. Wang et al., Phys. Rev. D 105, 114036 (2022), arXiv: 2201.07374

  • [37]

    Y. Zhu, S. Chen, H. Cui et al., Nucl. Instrum. Meth. A 1047, 167835 (2023), arXiv: 2209.14486

  • [38]

    F. Cuna, N. De Filippis, F. Grancagnolo et al., Simulation of particle identification with the cluster counting technique, in International Workshop on Future Linear Colliders, 5, (2021), arXiv: 2105.07064

  • [39]

    T. S. M. Ho, X. H. Jiang, T. H. Kwok et al., Phys. Rev. D 109, 093004 (2024), arXiv: 2212.02433

  • [40]

    F. Bedeschi, M. Caccia, R. Ferrari et al., IDEA detector Letter of Intent, (2021) https://www.snowmass21.org/ docs/files/summaries/EF/SNOWMASS21-EF1_EF4-IF3_IF6-096.pdf

  • [41]

    Y. Che, V. Boudry, H. Videau et al., Eur. Phys. J. C 83, 93 (2023), arXiv: 2209.02932

  • [42]

    J. Wang, TDR of A Reference CEPC Detector, Talk at 2024 International Workshop of CEPC, (2024)

  • [43]

    R. Manqi, The CEPC simulation and tools: software and performance, (2019) http://ias.ust.hk/program/shared_doc/ 2019/201901hep/conf/20190121_4042_pm_Manqi%20Ruan.pdf

  • [44]

    Y. Shen, H. Xiao, H. Li et al., Photon Reconstruction Performance at the CEPC baseline detector, arXiv: 1908.09062

  • [45]

    P. Hu, Y. Wang, D. Du et al., Nucl. Instrum. Meth. A 1059, 168944 (2024)

  • [46]

    P. Z. Lai, M. Ruan, and C.-M. Kuo, JINST 16, P07037 (2021), arXiv: 2104.05029

  • [47]

    D. Yu, T. Zheng, and M. Ruan, JINST 16, P06013 (2021), arXiv: 2105.01246

  • [48]

    T. Zheng, J. Wang, Y. Shen et al., Eur. Phys. J. Plus 135, 274 (2020)

  • [49]

    D. Yu, M. Ruan, V. Boudry, H. Videau et al., Eur. Phys. J. C 80, 7 (2020)

  • [50]

    X. She et al., JINST 18, C07015 (2023)

  • [51]

    Z. Liang and Y. Zhang, CEPC vertex Detector, Talk at 2024 International Workshop of CEPC, (2024)

  • [52]

    X. Li, M. Ruan, and M. Zhao, Eur. Phys. J. C 84, 859 (2024), arXiv: 2205.10565

  • [53]

    H. Qu and L. Gouskos, Phys. Rev. D 101, 056019 (2020), arXiv: 1902.08570

  • [54]

    CEPC Sᴛᴜᴅʏ Gʀᴏᴜᴘ Collaboration, CEPC Software Homepage, http://cepcsoft.ihep.ac.cn/

  • [55]

    F. U. Bernlochner, Z. Ligeti, M. Papucci et al., Phys. Rev. D 95, 115008 (2017), arXiv: 1703.05330

  • [56]

    D. Bryman, V. Cirigliano, A. Crivellin et al., Ann. Rev. Nucl. Part. Sci. 72, 69 (2022), arXiv: 2111.05338

  • [57]

    S. Bifani, S. Descotes-Genon, A. R. Vidal et al., J. Phys. G 46, 023001 (2019), arXiv: 1809.06229

  • [58]

    F. U. Bernlochner, M. F. Sevilla, D. J. Robinson et al., Rev. Mod. Phys. 94, 015003 (2022), arXiv: 2101.08326

  • [59]

    W. F. Duan, S. Iguro, X. Q. Li et al., Sum rules for semi-leptonic \begin{document}$b \to c$\end{document} and \begin{document}$b \to u$\end{document} decays: accuracy checks and implications, arXiv: 2410.21384

  • [60]

    P. Langacker and M. Plumacher, Phys. Rev. D 62, 013006 (2000), arXiv: hep-ph/0001204

  • [61]

    V. Barger, L. Everett, J. Jiang et al., Phys. Rev. D 80, 055008 (2009), arXiv: 0902.4507

  • [62]

    V. Barger, L. L. Everett, J. Jiang et al., JHEP 12, 048 (2009), arXiv: 0906.3745

  • [63]

    P. Langacker, Rev. Mod. Phys. 81, 1199 (2009), arXiv: 0801.1345

  • [64]

    W. Altmannshofer, S. Gori, M. Pospelov et al., Phys. Rev. D 89, 095033 (2014), arXiv: 1403.1269

  • [65]

    A. Greljo, G. Isidori, and D. Marzocca, JHEP 07, 142 (2015), arXiv: 1506.01705

  • [66]

    I. Doršner, S. Fajfer, A. Greljo et al., Phys. Rept. 641, 1 (2016), arXiv: 1603.04993

  • [67]

    E. E. Jenkins, A. V. Manohar, and P. Stoffer, JHEP 03, 016 (2018), arXiv: 1709.04486

  • [68]

    T. Zheng, J. Xu, L. Cao et al., Chin. Phys. C 45, 023001 (2021), arXiv: 2007.08234

  • [69]

    X. Zuo, M. Fedele, C. Helsens et al., Eur. Phys. J. C 84, (2024), arXiv: 2305.02998

  • [70]

    Y. Amhis, M. Hartmann, C. Helsens et al., JHEP 12, 133 (2021), arXiv: 2105.13330

  • [71]

    Fʟᴀᴠᴏᴜʀ Lᴀᴛᴛɪᴄᴇ Aᴠᴇʀᴀɢɪɴɢ Gʀᴏᴜᴘ (FLAG) Collaboration, FLAG Review 2024, arXiv: 2411.04268

  • [72]

    S. Narison, Phys. Lett. B 802, 135221 (2020), arXiv: 1906.03614

  • [73]

    Hᴇᴀᴠʏ Fʟᴀᴠᴏʀ Aᴠᴇʀᴀɢɪɴɢ Gʀᴏᴜᴘ (HFLAV) Collaboration, Averages of b-hadron, c-hadron, and τ-lepton properties as of 2023, arXiv: 2411.18639

  • [74]

    P. Gambino, P. Giordano, G. Ossola et al., JHEP 10, 058 (2007), arXiv: 0707.2493

  • [75]

    UTfit Collaboration, Rend. Lincei Sci. Fis. Nat. 34, 37 (2023), arXiv: 2212.03894

  • [76]

    CKMfitter Collaboration, Recent ckmfitter updates on global fits of the ckm matrix, https://indico.cern.ch/event/ 891123/contributions/4601722/attachments/2351890/4013122/CKMfitter2021.pdf.

  • [77]

    F. U. Bernlochner, Z. Ligeti, and D. J. Robinson, Phys. Rev. D 97, 075011 (2018), arXiv: 1711.03110

  • [78]

    J. Charles, S. Descotes-Genon, Z. Ligeti et al., Phys. Rev. D 102, 056023 (2020), arXiv: 2006.04824

  • [79]

    Y. Grossman and Z. Ligeti, Eur. Phys. J. Plus 136, 912 (2021), arXiv: 2106.12168

  • [80]

    M. Artuso, G. Borissov, and A. Lenz, Rev. Mod. Phys. 88, 045002 (2016), arXiv: 1511.09466

  • [81]

    P. Chang, K. F. Chen, and W. S. Hou, Prog. Part. Nucl. Phys. 97, 261 (2017), arXiv: 1708.03793

  • [82]

    W. Altmannshofer and F. Archilli, Rare decays of b and c hadrons, in Snowmass 2021, 6, (2022), arXiv: 2206.11331

  • [83]

    L. Calibbi, A. Crivellin, and T. Ota, Phys. Rev. Lett. 115, 181801 (2015), arXiv: 1506.02661

  • [84]

    L. Allwicher, C. Cornella, G. Isidori et al., JHEP 03, 049 (2024), arXiv: 2311.00020

  • [85]

    L. Li and T. Liu, JHEP 06, 064 (2021), arXiv: 2012.00665

  • [86]

    Y. Amhis, M. Kenzie, M. Reboud et al., JHEP 01, 144 (2024), arXiv: 2309.11353

  • [87]

    Bᴇʟʟᴇ-II Collaboration, Snowmass White Paper: Belle II physics reach and plans for the next decade and beyond, arXiv: 2207.06307

  • [88]

    J. F. Kamenik, S. Monteil, A. Semkiv et al., Eur. Phys. J. C 77, 701 (2017), arXiv: 1705.11106

  • [89]

    B. Capdevila, A. Crivellin, and J. Matias, Eur. Phys. J. ST 1, 20 (2023), arXiv: 2309.01311

  • [90]

    HFLAV Collaboration, Preliminary average of \begin{document}$R(D)$\end{document} and \begin{document}$R(D^\ast)$\end{document} for Moriond 2024 at https://hflav-eos.web. cern.ch/hflav-eos/semi/moriond24/html/RDsDsstar/RDRDs.html.

  • [91]

    LHCʙ Collaboration, JHEP 05, 040 (2020), arXiv: 1912.08139

  • [92]

    LHCʙ Collaboration, Branching fraction measurements of the rare \begin{document}$B^0_s\rightarrow \phi\mu^+\mu^-$\end{document} and \begin{document}$B^0_s\rightarrow f_2^\prime(1525)\mu^+\mu^-$\end{document} decays, arXiv: 2105.14007

  • [93]

    LHCʙ Collaboration, Phys. Rev. Lett. 118, 191801 (2017), arXiv: 1703.05747

  • [94]

    S. Descotes-Genon, M. Novoa-Brunet, and K. K. Vos, JHEP 02, 129 (2021), arXiv: 2008.08000

  • [95]

    R. Fleischer, E. Malami, A. Rehult et al., JHEP 03, 113 (2023), arXiv: 2212.09575

  • [96]

    B. Batell, M. Pospelov, and A. Ritz, Phys. Rev. D 83, 054005 (2011), arXiv: 0911.4938

  • [97]

    J. A. Dror, R. Lasenby, and M. Pospelov, Phys. Rev. D 96, 075036 (2017), arXiv: 1707.01503

  • [98]

    B. F. Hou, X. Q. Li, M. Shen et al., JHEP 06, 172 (2024), arXiv: 2402.19208

  • [99]

    B. Bhattacharya, A. Datta, D. London et al., Phys. Lett. B 742, 370 (2015), arXiv: 1412.7164

  • [100]

    Bᴇʟʟᴇ-II Collaboration, Phys. Rev. D 109, 112006 (2024), arXiv: 2311.14647

  • [101]

    A. J. Buras, J. Girrbach-Noe, C. Niehoff et al., JHEP 02, 184 (2015), arXiv: 1409.4557

  • [102]

    D. Bečirević, G. Piazza, and O. Sumensari, Eur. Phys. J. C 83, 252 (2023), arXiv: 2301.06990

  • [103]

    R. Aleksan, L. Oliver, and E. Perez, Study of CP violation in \begin{document}$B^\pm$\end{document} decays to \begin{document}$\overline{D^0}(D^0) K^\pm$\end{document} at FCCee, arXiv: 2107.05311

  • [104]

    D. Hill, First steps with flavour physics studies at FCC-ee, Talk at the 4th FCC Physics and Experiments Workshop, (2020)

  • [105]

    LHCʙ Collaboration, Phys. Rev. Lett. 123, 081802 (2019), arXiv: 1905.06284

  • [106]

    LHCʙ Collaboration, Phys. Rev. Lett. 123, 031801 (2019), arXiv: 1904.06697

  • [107]

    C. Bobeth and U. Haisch, Acta Phys. Polon. B 44, 127 (2013), arXiv: 1109.1826

  • [108]

    Q. Qin, Y. L. Shen, C. Wang et al., Phys. Rev. Lett. 131, 091902 (2023), arXiv: 2207.02691

  • [109]

    Y. L. Shen, Y. M. Wang, and Y. B. Wei, JHEP 12, 169 (2020), arXiv: 2009.02723

  • [110]

    S. W. Bosch and G. Buchalla, JHEP 08, 054 (2002), arXiv: hep-ph/0208202

  • [111]

    Bᴇʟʟᴇ, Bᴇʟʟᴇ-II Collaboration, Phys. Rev. D 110, L031106 (2024), arXiv: 2405.19734

  • [112]

    M. Chrzaszcz, R. G. Suarez, and S. Monteil, Eur. Phys. J. Plus 136, 1056 (2021), arXiv: 2106.15459

  • [113]

    BᴀBᴀʀ Collaboration, Phys. Rev. D 86, 012004 (2012), arXiv: 1204.2852

  • [114]

    Bᴇʟʟᴇ Collaboration, Phys. Rev. Lett. 130, 261802 (2023), arXiv: 2212.04128

  • [115]

    LHCʙ Collaboration, Phys. Rev. Lett. 108, 101601 (2012), arXiv: 1110.0730

  • [116]

    LHCʙ Collaboration, Phys. Rev. Lett. 112, 131802 (2014), arXiv: 1401.5361

  • [117]

    LHCʙ Collaboration, Phys. Rev. Lett. 119, 181807 (2017), arXiv: 1708.05808

  • [118]

    A. D. Sakharov, Pisma Zh. Eksp. Teor. Fiz. 5, 32 (1967)

  • [119]

    G. Elor, M. Escudero, and A. Nelson, Phys. Rev. D 99, 035031 (2019), arXiv: 1810.00880

  • [120]

    F. Elahi, G. Elor, and R. McGehee, Phys. Rev. D 105, 055024 (2022), arXiv: 2109.09751

  • [121]

    G. Alonso-Álvarez, G. Elor, M. Escudero et al., Phys. Rev. D 105, 115005 (2022), arXiv: 2111.12712

  • [122]

    G. Alonso-Álvarez, G. Elor, and M. Escudero, Phys. Rev. D 104, 035028 (2021), arXiv: 2101.02706

  • [123]

    Y. Zheng, J. N. Ding, D. H. Li et al., Chin. Phys. C 48, 083109 (2024), arXiv: 2404.04337

  • [124]

    T. Liu, M. J. Ramsey-Musolf, and J. Shu, Phys. Rev. Lett. 108, 221301 (2012), arXiv: 1109.4145

  • [125]

    Y. F. Shen, W. J. Song, and Q. Qin, Phys. Rev. D 110, L031301 (2024), arXiv: 2301.05848

  • [126]

    H. G. Moser and A. Roussarie, Nucl. Instrum. Meth. A 384, 491 (1997)

  • [127]

    LHCʙ Collaboration, PoS, LHCP2018 230 (2018)

  • [128]

    R. Aleksan, L. Oliver, and E. Perez, Phys. Rev. D 105, 053008 (2022), arXiv: 2107.02002

  • [129]

    A. S. Dighe, I. Dunietz, and R. Fleischer, Eur. Phys. J. C 6, 647 (1999), arXiv: hep-ph/9804253

  • [130]

    S. Faller, R. Fleischer, and T. Mannel, Phys. Rev. D 79, 014005 (2009), arXiv: 0810.4248

  • [131]

    M. T. Lucchini, W. Chung, S. C. Eno et al., JINST 15, P11005 (2020), arXiv: 2008.00338

  • [132]

    J. Charles, O. Deschamps, S. Descotes-Genon et al., Eur. Phys. J. C 77, 574 (2017), arXiv: 1705.02981

  • [133]

    LHCʙ Collaboration, Phys. Rev. Lett. 134, 101801 (2025), arXiv: 2411.12178

  • [134]

    LHCʙ Collaboration, Observation of charge-parity symmetry breaking in baryon decays, arXiv: 2503.16954

  • [135]

    LHCʙ Collaboration, Phys. Rev. Lett. 108, 111602 (2012), arXiv: 1112.0938

  • [136]

    CDF Collaboration, Phys. Rev. Lett. 109, 111801 (2012), arXiv: 1207.2158

  • [137]

    LHCʙ Collaboration, Phys. Rev. Lett. 122, 211803 (2019), arXiv: 1903.08726

  • [138]

    G. Burdman, E. Golowich, J. L. Hewett et al., Phys. Rev. D 66, 014009 (2002), arXiv: hep-ph/0112235

  • [139]

    S. de Boer and G. Hiller, Phys. Rev. D 93, 074001 (2016), arXiv: 1510.00311

  • [140]

    S. Fajfer and N. Košnik, Eur. Phys. J. C 75, 567 (2015), arXiv: 1510.00965

  • [141]

    R. Bause, M. Golz, G. Hiller et al., Eur. Phys. J. C 80, 65 (2020), arXiv: 1909.11108

  • [142]

    D. Guadagnoli and P. Koppenburg, Lepton-flavor violation and lepton-flavor-universality violation in b and c decays, in Snowmass 2021, 7, (2022), arXiv: 2207.01851

  • [143]

    S. de Boer and G. Hiller, Phys. Rev. D 98, 035041 (2018), arXiv: 1805.08516

  • [144]

    M. Golz, G. Hiller, and T. Magorsch, Eur. Phys. J. C 82, 357 (2022), arXiv: 2202.02331

  • [145]

    R. Bause, H. Gisbert, M. Golz et al., Phys. Rev. D 103, 015033 (2021), arXiv: 2010.02225

  • [146]

    BESIII Collaboration, Phys. Rev. D 105, L071102 (2022), arXiv: 2112.14236

  • [147]

    LHCʙ Collaboration, Phys. Rev. D 104, 072010 (2021), arXiv: 2105.09889

  • [148]

    LHCʙ Collaboration, JHEP 09, 129 (2023), arXiv: 2306.12746

  • [149]

    LHCʙ Collaboration, JHEP 03, 159 (2016), arXiv: 1510.01707

  • [150]

    H. Y. Cheng and C. W. Chiang, Phys. Rev. D 86, 014014 (2012), arXiv: 1205.0580

  • [151]

    H. Y. Cheng and C. W. Chiang, Phys. Rev. D 85, 034036 (2012), arXiv: 1201.0785

  • [152]

    M. Chala, A. Lenz, A. V. Rusov et al., JHEP 07, 161 (2019), arXiv: 1903.10490

  • [153]

    A. Dery and Y. Nir, JHEP 12, 104 (2019), arXiv: 1909.11242

  • [154]

    R. Bause, H. Gisbert, M. Golz et al., Phys. Rev. D 101, 115006 (2020), arXiv: 2004.01206

  • [155]

    A. Lenz, M. L. Piscopo, and A. V. Rusov, JHEP 03, 151 (2024), arXiv: 2312.13245

  • [156]

    LHCʙ Collaboration, Phys. Rev. Lett. 122, 211803 (2019), arXiv: 1903.08726

  • [157]

    H. Y. Cheng and C. W. Chiang, Phys. Rev. D 100, 093002 (2019), arXiv: 1909.03063

  • [158]

    H. Y. Cheng and C. W. Chiang, Phys. Rev. D 104, 073003 (2021), arXiv: 2104.13548

  • [159]

    H. Y. Cheng, C. W. Chiang, and F. Xu, Phys. Rev. D 110, 094052 (2024), arXiv: 2408.13942

  • [160]

    NA62 Collaboration, JINST 12, P05025 (2017), arXiv: 1703.08501

  • [161]

    KOTO Collaboration, Phys. Rev. Lett. 122, 021802 (2019), arXiv: 1810.09655

  • [162]

    E. Goudzovski et al., Rept. Prog. Phys. 86, 016201 (2023), arXiv: 2201.07805

  • [163]

    A. Dery, M. Ghosh, Y. Grossman, and S. Schacht, JHEP 07, 103 (2021), arXiv: 2104.06427

  • [164]

    A. Dery, M. Ghosh, Y. Grossman et al., JHEP 03, 014 (2023), arXiv: 2211.03804

  • [165]

    Pᴀʀᴛɪᴄʟᴇ Dᴀᴛᴀ Gʀᴏᴜᴘ Collaboration, Phys. Rev. D 110, 030001 (2024)

  • [166]

    ALEPH, DELPHI, L 3, OP AL, S LD, LEP Eʟᴇᴄᴛʀᴏᴡᴇᴀᴋ Wᴏʀᴋɪɴɢ Gʀᴏᴜᴘ, SLD Eʟᴇᴄᴛʀᴏᴡᴇᴀᴋ Gʀᴏᴜᴘ, SLD Hᴇᴀᴠʏ Fʟᴀᴠᴏᴜʀ Gʀᴏᴜᴘ Collaboration, Phys. Rept. 427, 257 (2006), arXiv: hep-ex/0509008

  • [167]

    S. Banerjee et al., Snowmass 2021 White Paper: Charged lepton flavor violation in the tau sector, arXiv: 2203.14919

  • [168]

    X. D. Shi, X. R. Zhou, X. S. Qin et al., JINST 16, P03029 (2021), arXiv: 2011.01654

  • [169]

    R. Ferrari, PID with Dual-readout Calorimeters, Talk at the 2021 IAS Program on Particle Physics, (2021)

  • [170]

    S. Giagu, L. Torresi, and M. Di Filippo, Front. in Phys. 10, 909205 (2022)

  • [171]

    M. Dam, SciPost Phys. Proc. 1, 041 (2019), arXiv: 1811.09408

  • [172]

    A. Lusiani, LFV and LFU in tau decays, Talk at the Workshop on CEPC New Physics and Flavor Physics Studies, Fudan University, (2023)

  • [173]

    A. Lusiani, Tau Physics Prospects at FCC-ee, FCC note doi: 10.17181/9bkm6-h8906, (2023)

  • [174]

    S. Banerjee, Universe 8, 480 (2022), arXiv: 2209.11639

  • [175]

    A. Lusiani, Tau Physics Prospects at FCC-ee, Oct., (2024)

  • [176]

    D. Yu, Lepton identification and backgrounds for flavor studies at the CEPC, Talk at the 2021 International CEPC Workshop, (2021)

  • [177]

    A. Celis, V. Cirigliano, and E. Passemar, Phys. Rev. D 89, 095014 (2014), arXiv: 1403.5781

  • [178]

    L. Calibbi and G. Signorelli, Riv. Nuovo Cim. 41, 71 (2018), arXiv: 1709.00294

  • [179]

    C. Cornella, D. A. Faroughy, J. Fuentes-Martin et al., JHEP 08, 050 (2021), arXiv: 2103.16558

  • [180]

    A. Pich, Prog. Part. Nucl. Phys. 75, 41 (2014), arXiv: 1310.7922

  • [181]

    A. Lusiani, Lepton Flavour Universality tests and determination of Vus using the tau branching fractions fit, Poster presented at ICHEP 2024, (2024)

  • [182]

    BESIII Collaboration, Chin. Phys. C 44, 040001 (2020), arXiv: 1912.05983

  • [183]

    Bᴇʟʟᴇ-II Collaboration, Phys. Rev. D 108, 032006 (2023), arXiv: 2305.19116

  • [184]

    Bᴇʟʟᴇ-II Collaboration, JHEP 08, 205 (2024), arXiv: 2405.14625

  • [185]

    Bᴇʟʟᴇ Collaboration, Phys. Rev. Lett. 112, 031801 (2014), arXiv: 1310.8503

  • [186]

    F. Feruglio, P. Paradisi, and A. Pattori, JHEP 09, 061 (2017), arXiv: 1705.00929

  • [187]

    L. Allwicher, G. Isidori, and N. Selimovic, Phys. Lett. B 826, 136903 (2022), arXiv: 2109.03833

  • [188]

    OPAL Collaboration, Eur. Phys. J. C 7, 571 (1999), arXiv: hep-ex/9808019

  • [189]

    ALEPH Collaboration, Phys. Rept. 421, 191 (2005), arXiv: hep-ex/0506072

  • [190]

    ALEPH Collaboration, Eur. Phys. J. C 4, 29 (1998)

  • [191]

    L3 Collaboration, Phys. Lett. B 345, 93 (1995)

  • [192]

    A. Pich, Eur. Phys. J. Plus 136, 1117 (2021), arXiv: 2012.07099

  • [193]

    DELPHI Collaboration, Eur. Phys. J. C 16, 371 (2000)

  • [194]

    L3 Collaboration, Eur. Phys. J. C 16, 1 (2000), arXiv: hep-ex/0002046

  • [195]

    R. Tenchini, Adv. Ser. Direct. High Energy Phys. 26, 161 (2016)

  • [196]

    X. Chen and Y. Wu, JHEP 10, 089 (2019), arXiv: 1803.00501

  • [197]

    A. Crivellin, M. Hoferichter, and J. M. Roney, Phys. Rev. D 106, 093007 (2022), arXiv: 2111.10378

  • [198]

    CMS Collaboration, Observation of \begin{document}$\gamma\gamma\to\tau\tau$\end{document} in proton-proton collisions and limits on the anomalous electromagnetic moments of the τ lepton, arXiv: 2406.03975

  • [199]

    DELPHI Collaboration, Eur. Phys. J. C 35, 159 (2004), arXiv: hep-ex/0406010

  • [200]

    S. Eidelman and M. Passera, Mod. Phys. Lett. A 22, 159 (2007), arXiv: hep-ph/0701260

  • [201]

    J. Bernabeu, G. A. Gonzalez-Sprinberg, and J. Vidal, Phys. Lett. B 326, 168 (1994)

  • [202]

    W. Bernreuther, U. Low, J. P. Ma et al., Z. Phys. C 43, 117 (1989)

  • [203]

    U. Stiegler, Z. Phys. C 57, 511 (1993)

  • [204]

    ALEPH Collaboration, Eur. Phys. J. C 30, 291 (2003), arXiv: hep-ex/0209066

  • [205]

    M. Davier, L. Duflot, F. Le Diberder et al., Phys. Lett. B 306, 411 (1993)

  • [206]

    M. Diehl and O. Nachtmann, Z. Phys. C 62, 397 (1994)

  • [207]

    W. Bernreuther, O. Nachtmann, and P. Overmann, Phys. Rev. D 48, 78 (1993)

  • [208]

    W. Bernreuther, L. Chen, and O. Nachtmann, Phys. Rev. D 103, 096011 (2021), arXiv: 2101.08071

  • [209]

    Y. S. Tsai, Nucl. Phys. B Proc. Suppl. 55, 293 (1997), arXiv: hep-ph/9612281

  • [210]

    J. H. Kuhn and E. Mirkes, Phys. Lett. B 398, 407 (1997), arXiv: hep-ph/9609502

  • [211]

    D. Kimura, K. Y. Lee, T. Morozumi et al., CP violation in tau decays, in Heavy Quarks and Leptons 2008 (HQ&L08), 5, (2009), arXiv: 0905.1802

  • [212]

    I. I. Bigi, Nucl. Phys. Proc. Suppl. 253-255, 91 (2014), arXiv: 1210.2968

  • [213]

    K. Kiers, Nucl. Phys. Proc. Suppl. 253-255, 95 (2014), arXiv: 1212.6921

  • [214]

    I. I. Bigi and A. I. Sanda, Phys. Lett. B 625, 47 (2005), arXiv: hep-ph/0506037

  • [215]

    Y. Grossman and Y. Nir, JHEP 04, 002 (2012), arXiv: 1110.3790

  • [216]

    CLEO Collaboration, Phys. Rev. Lett. 81, 3823 (1998), arXiv: hep-ex/9805027

  • [217]

    CLEO Collaboration, Phys. Rev. Lett. 88, 111803 (2002), arXiv: hep-ex/0111095

  • [218]

    Bᴇʟʟᴇ Collaboration, Phys. Rev. Lett. 107, 131801 (2011), arXiv: 1101.0349

  • [219]

    BᴀBᴀʀ Collaboration, Phys. Rev. D 85, 031102 (2012), arXiv: 1109.1527

  • [220]

    F. Z. Chen, X. Q. Li, Y. D. Yang et al., Phys. Rev. D 100, 113006 (2019), arXiv: 1909.05543

  • [221]

    V. Cirigliano, A. Crivellin, and M. Hoferichter, Phys. Rev. Lett. 120, 141803 (2018), arXiv: 1712.06595

  • [222]

    J. Rendón, P. Roig, and G. T. Sánchez, Phys. Rev. D, 99, 093005 (2019), arXiv: 1902.08143

  • [223]

    F. Z. Chen, X. Q. Li, and Y. D. Yang, JHEP 05, 151 (2020), arXiv: 2003.05735

  • [224]

    F. Z. Chen, X. Q. Li, S. C. Peng et al., JHEP 01, 108 (2022), arXiv: 2107.12310

  • [225]

    H. Sang, X. Shi, X. Zhou et al., Chin. Phys. C 45, 053003 (2021), arXiv: 2012.06241

  • [226]

    L. Calibbi, X. Marcano, and J. Roy, Eur. Phys. J. C 81, 1054 (2021), arXiv: 2107.10273

  • [227]

    W. Altmannshofer, P. Munbodh, and T. Oh, Probing Lepton Flavor Violation at Circular Electron-Positron Colliders, arXiv: 2305.03869

  • [228]

    W. Buchmuller and D. Wyler, Nucl. Phys. B 268, 621 (1986)

  • [229]

    B. Grzadkowski and J. F. Gunion, Phys. Lett. B 350, 218 (1995), arXiv: hep-ph/9501339

  • [230]

    ATLAS Collaboration, Phys. Rev. Lett. 127, 271801 (2022), arXiv: 2105.12491

  • [231]

    ATLAS Collaboration, Phys. Rev. D 108, 032015 (2023), arXiv: 2204.10783

  • [232]

    A. Crivellin and M. Hoferichter, JHEP 07, 135 (2021), arXiv: 2104.03202

  • [233]

    M. Beneke, G. Buchalla, M. Neubert et al., Phys. Rev. Lett. 83, 1914 (1999), arXiv: hep-ph/9905312

  • [234]

    M. Beneke, G. Buchalla, M. Neubert et al., Nucl. Phys. B 591, 313 (2000), arXiv: hep-ph/0006124

  • [235]

    Y. Y. Keum, H. N. Li, and A. I. Sanda, Phys. Rev. D 63, 054008 (2001), arXiv: hep-ph/0004173

  • [236]

    C. D. Lu, K. Ukai, and M. Z. Yang, Phys. Rev. D 63, 074009 (2001), arXiv: hep-ph/0004213

  • [237]

    Y. Grossman, M. König, and M. Neubert, JHEP 04, 101 (2015), arXiv: 1501.06569

  • [238]

    CMS Collaboration, Eur. Phys. J. C 79, 94 (2019), arXiv: 1810.10056

  • [239]

    S. Cheng and Q. Qin, Phys. Rev. D 99, 016019 (2019), arXiv: 1810.10524

  • [240]

    L. Bergstrom and R. W. Robinett, Phys. Rev. D 41, 3513 (1990)

  • [241]

    M. König and M. Neubert, JHEP 08, 012 (2015), arXiv: 1505.03870

  • [242]

    A. Crivellin and S. Pokorski, Phys. Rev. Lett. 114, 011802 (2015), arXiv: 1407.1320

  • [243]

    S. Descotes-Genon, A. Falkowski, M. Fedele et al., JHEP 05, 172 (2019), arXiv: 1812.08163

  • [244]

    D. Marzocca, M. Szewc, and M. Tammaro, JHEP 11, 017 (2024), arXiv: 2405.08880

  • [245]

    H. Liang, L. Li, Y. Zhu et al., Measurement of CKM element \begin{document}$|V_cb|$\end{document} from W boson decays at the future Higgs factories, arXiv: 2406.01675

  • [246]

    ATLAS Collaboration, Eur. Phys. J. C 77, 367 (2017), arXiv: 1612.03016

  • [247]

    ATLAS Collaboration, Nature Phys. 17, 813 (2021), arXiv: 2007.14040

  • [248]

    CMS Collaboration, Phys. Rev. D 105, 072008 (2022), arXiv: 2201.07861

  • [249]

    ALEPH, DELPHI, L 3, OP AL, LEP Eʟᴇᴄᴛʀᴏᴡᴇᴀᴋ Collaboration, Phys. Rept. 532, 119 (2013), arXiv: 1302.3415

  • [250]

    CMS Collaboration, Nature 607, 60 (2022)

  • [251]

    ATLAS Collaboration, Nature 607, 52 (2022)

  • [252]

    J. F. Kamenik, A. Korajac, M. Szewc et al., Phys. Rev. D 109, L011301 (2024), arXiv: 2306.17520

  • [253]

    N. Escudero, C. Muñoz, and A. M. Teixeira, Phys. Rev. D 73, 055015 (2006)

  • [254]

    A. Crivellin, J. Heeck, and D. Müller, Phys. Rev. D 97, 035008 (2018), arXiv: 1710.04663

  • [255]

    Q. Qin, Q. Li, C. D. Lü et al., Eur. Phys. J. C 78, 835 (2018), arXiv: 1711.07243

  • [256]

    R. Harnik, J. Kopp and J. Zupan, JHEP 03, 026 (2013), arXiv: 1209.1397

  • [257]

    C. T. Hill and E. H. Simmons, Phys. Rept. 381, 235 (2003), arXiv: hep-ph/0203079

  • [258]

    L. Shi and C. Zhang, Chin. Phys. C 43, 113104 (2019), arXiv: 1906.04573

  • [259]

    D. Barducci et al., Interpreting top-quark LHC measurements in the standard-model effective field theory, arXiv: 1802.07237

  • [260]

    ATLAS Collaboration, Eur. Phys. J. C 76, 55 (2016), arXiv: 1509.00294

  • [261]

    ATLAS Collaboration, Phys. Rev. D 98, 032002 (2018), arXiv: 1805.03483

  • [262]

    ATLAS Collaboration, JHEP 07, 176 (2018), arXiv: 1803.09923

  • [263]

    CMS Collaboration, JHEP 04, 035 (2016), arXiv: 1511.03951

  • [264]

    CMS Collaboration, JHEP 02, 028 (2017), arXiv: 1610.03545

  • [265]

    OPAL Collaboration, Phys. Lett. B 521, 181 (2001), arXiv: hep-ex/0110009

  • [266]

    ALEPH Collaboration, Phys. Lett. B 543, 173 (2002), arXiv: hep-ex/0206070

  • [267]

    L3 Collaboration, Phys. Lett. B 549, 290 (2002), arXiv: hep-ex/0210041

  • [268]

    DELPHI Collaboration, Eur. Phys. J. C 71, 1555 (2011), arXiv: 1102.4455

  • [269]

    G. Durieux, F. Maltoni, and C. Zhang, Phys. Rev. D 91, 074017 (2015), arXiv: 1412.7166

  • [270]

    A. Cerri et al., CERN Yellow Rep. Monogr. 7, 867 (2019), arXiv: 1812.07638

  • [271]

    C. Balazs, H. J. He, and C. P. Yuan, Phys. Rev. D 60, 114001 (1999), arXiv: hep-ph/9812263

  • [272]

    H. J. He and C. P. Yuan, Phys. Rev. Lett. 83, 28 (1999), arXiv: hep-ph/9810367

  • [273]

    J. L. Diaz-Cruz, H. J. He, and C. P. Yuan, Phys. Lett. B 530, 179 (2002), arXiv: hep-ph/0103178

  • [274]

    S. F. Ge, H. J. He, and R. Q. Xiao, JHEP 10, 007 (2016), arXiv: 1603.03385

  • [275]

    ATLAS Collaboration, JHEP 12, 195 (2023), arXiv: 2309.12817

  • [276]

    BᴀBᴀʀ Collaboration, Phys. Rev. Lett. 90, 242001 (2003), arXiv: hep-ex/0304021

  • [277]

    Bᴇʟʟᴇ Collaboration, Phys. Rev. Lett. 100, 142001 (2008), arXiv: 0708.1790

  • [278]

    BESIII Collaboration, Phys. Rev. Lett. 110, 252001 (2013), arXiv: 1303.5949

  • [279]

    Bᴇʟʟᴇ Collaboration, Phys. Rev. Lett. 110, 252002 (2013), arXiv: 1304.0121

  • [280]

    BESIII Collaboration, Phys. Rev. Lett. 126, 102001 (2021), arXiv: 2011.07855

  • [281]

    LHCʙ Collaboration, Phys. Rev. Lett. 127, 082001 (2021), arXiv: 2103.01803

  • [282]

    LHCʙ Collaboration, Phys. Rev. Lett. 115, 072001 (2015), arXiv: 1507.03414

  • [283]

    LHCʙ Collaboration, Phys. Rev. Lett. 122, 222001 (2019), arXiv: 1904.03947

  • [284]

    LHCʙ Collaboration, Nature Phys. 18, 751 (2022), arXiv: 2109.01038

  • [285]

    LHCʙ Collaboration, Sci. Bull. 65, 1983 (2020), arXiv: 2006.16957

  • [286]

    ATLAS Collaboration, Phys. Rev. Lett. 131, 151902 (2023), arXiv: 2304.08962

  • [287]

    CMS Collaboration, Observation of new structure in the J/ψJ/ψ mass spectrum in proton-proton collisions at \begin{document}$\sqrt{s}$\end{document} = 13 TeV, arXiv: 2306.07164

  • [288]

    S. Godfrey and N. Isgur, Phys. Rev. D 32, 189 (1985)

  • [289]

    H. X. Chen, W. Chen, X. Liu et al., Phys. Rept. 639, 1 (2016), arXiv: 1601.02092

  • [290]

    A. Hosaka, T. Iijima, K. Miyabayashi et al., PTEP 2016, 062C01 (2016), arXiv: 1603.09229

  • [291]

    H. X. Chen, W. Chen, X. Liu et al., Rept. Prog. Phys. 80, 076201 (2017), arXiv: 1609.08928

  • [292]

    A. Esposito, A. Pilloni, and A. D. Polosa, Phys. Rept. 668, 1 (2017), arXiv: 1611.07920

  • [293]

    R. F. Lebed, R. E. Mitchell, and E. S. Swanson, Prog. Part. Nucl. Phys. 93, 143 (2017), arXiv: 1610.04528

  • [294]

    F. K. Guo, C. Hanhart, U. G. Meißner et al., Rev. Mod. Phys. 90, 015004 (2018), arXiv: 1705.00141

  • [295]

    A. Ali, J. S. Lange, and S. Stone, Prog. Part. Nucl. Phys. 97, 123 (2017), arXiv: 1706.00610

  • [296]

    S. L. Olsen, T. Skwarnicki, and D. Zieminska, Rev. Mod. Phys. 90, 015003 (2018), arXiv: 1708.04012

  • [297]

    Y. R. Liu, H. X. Chen, W. Chen et al., Prog. Part. Nucl. Phys. 107, 237 (2019), arXiv: 1903.11976

  • [298]

    N. Brambilla, S. Eidelman, C. Hanhart et al., Phys. Rep. 873, 1 (2020), arXiv: 1907.07583

  • [299]

    F. K. Guo, X. H. Liu, and S. Sakai, Prog. Part. Nucl. Phys. 112, 103757 (2020), arXiv: 1912.07030

  • [300]

    H. X. Chen, W. Chen, X. Liu et al., Rept. Prog. Phys. 86, 026201 (2023), arXiv: 2204.02649

  • [301]

    Y. Iwasaki, Prog. Theor. Phys. 54, 492 (1975)

  • [302]

    J. P. Ader, J. M. Richard, and P. Taxil, Phys. Rev. D 25, 2370 (1982)

  • [303]

    S. Zouzou, B. Silvestre-Brac, C. Gignoux et al, Z. Phys. C 30, 457 (1986)

  • [304]

    L. Heller and J. A. Tjon, Phys. Rev. D 32, 755 (1985)

  • [305]

    R. J. Lloyd and J. P. Vary, Phys. Rev. D 70, 014009 (2004), arXiv: hep-ph/0311179

  • [306]

    J. M. Richard, A. Valcarce, and J. Vijande, Phys. Rev. D 95, 054019 (2017), arXiv: 1703.00783

  • [307]

    M. N. Anwar, J. Ferretti, F. K. Guo et al., Eur. Phys. J. C 78, 647 (2018), arXiv: 1710.02540

  • [308]

    M. Karliner, S. Nussinov, and J. L. Rosner, Phys. Rev. D 95, 034011 (2017), arXiv: 1611.00348

  • [309]

    Y. Bai, S. Lu, and J. Osborne, Phys. Lett. B 798, 134930 (2019), arXiv: 1612.00012

  • [310]

    A. V. Berezhnoy, A. V. Luchinsky, and A. A. Novoselov, Phys. Rev. D 86, 034004 (2012), arXiv: 1111.1867

  • [311]

    V. R. Debastiani and F. S. Navarra, Chin. Phys. C 43, 013105 (2019), arXiv: 1706.07553

  • [312]

    A. Esposito and A. D. Polosa, Eur. Phys. J. C 78, 782 (2018), arXiv: 1807.06040

  • [313]

    C. Hughes, E. Eichten, and C. T. H. Davies, Phys. Rev. D 97, 054505 (2018), arXiv: 1710.03236

  • [314]

    J. Wu, Y. R. Liu, K. Chen et al., Phys. Rev. D 97, 094015 (2018), arXiv: 1605.01134

  • [315]

    M. S. Liu, Q. F. Lü, X. H. Zhong et al., Phys. Rev. D 100, 016006 (2019), arXiv: 1901.02564

  • [316]

    C. H. Chang and Y. Q. Chen, Phys. Rev. D 46, 3845 (1992)

  • [317]

    OPAL Collaboration, Phys. Lett. B 420, 157 (1998), arXiv: hep-ex/9801026

  • [318]

    DELPHI Collaboration, Phys. Lett. B 398, 207 (1997)

  • [319]

    ALEPH Collaboration, Phys. Lett. B 402, 213 (1997)

  • [320]

    LHCʙ Collaboration, Nature Commun. 13, 3351 (2022), arXiv: 2109.01056

  • [321]

    A. V. Manohar and M. B. Wise, Nucl. Phys. B 399, 17 (1993), arXiv: hep-ph/9212236

  • [322]

    M. Karliner and J. L. Rosner, Phys. Rev. Lett. 119, 202001 (2017), arXiv: 1707.07666

  • [323]

    E. J. Eichten and C. Quigg, Phys. Rev. Lett. 119, 202002 (2017), arXiv: 1707.09575

  • [324]

    J. J. Wu, L. Zhao, and B. S. Zou, Phys. Lett. B 709, 70 (2012), arXiv: 1011.5743

  • [325]

    Q. Qin, Y. F. Shen, and F. S. Yu, Chin. Phys. C 45, 103106 (2021), arXiv: 2008.08026

  • [326]

    A. Ali, A. Y. Parkhomenko, Q. Qin et al., Phys. Lett. B 782, 412 (2018), arXiv: 1805.02535

  • [327]

    Z. S. Jia, G. Li, P. P. Shi et al., Phys. Rev. D 110, 014031 (2024), arXiv: 2405.02619

  • [328]

    X. K. Dong, F. K. Guo, and B. S. Zou, Commun. Theor. Phys. 73, 125201 (2021), arXiv: 2108.02673

  • [329]

    P. Artoisenet and E. Braaten, Phys. Rev. D 83, 014019 (2011), arXiv: 1007.2868

  • [330]

    F. K. Guo, U. G. Meißner, W. Wang et al., Eur. Phys. J. C 74, 3063 (2014), arXiv: 1402.6236

  • [331]

    M. Albaladejo, F. K. Guo, C. Hanhart et al., Chin. Phys. C 41, 121001 (2017), arXiv: 1709.09101

  • [332]

    C. Bierlich et al., A comprehensive guide to the physics and usage of PYTHIA 8.3, arXiv: 2203.11601

  • [333]

    M. L. Du, V. Baru, X. K. Dong et al., Phys. Rev. D 105, 014024 (2022), arXiv: 2110.13765

  • [334]

    X. Luo, Y. Z. Jiang, G. Y. Zhang et al., Doubly-charmed baryon production in Z boson decay, arXiv: 2206.05965

  • [335]

    J. J. Niu, J. B. Li, H. Y. Bi et al., Eur. Phys. J. C 83, 822 (2023), arXiv: 2305.15362

  • [336]

    C. Antel et al., Feebly Interacting Particles: FIPs 2022 workshop report, in Workshop on Feebly-Interacting Particles, 5, (2023), arXiv: 2305.01715

  • [337]

    M. Bauer, M. Neubert, and A. Thamm, JHEP 12, 044 (2017), arXiv: 1708.00443

  • [338]

    J. Liu, X. Ma, L. T. Wang et al., Phys. Rev. D 107, 095016 (2023), arXiv: 2210.09335

  • [339]

    L. Calibbi, Z. Huang, S. Qin et al., Phys. Rev. D 108, 015002 (2023), arXiv: 2212.02818

  • [340]

    K. Cheung and C. J. Ouseph, Axion Like Particle Search at Higgs Factories, arXiv: 2303.16514

  • [341]

    M. He, X. G. He, C. K. Huang et al., JHEP 03, 139 (2018), arXiv: 1712.09095

  • [342]

    FCC-ᴇᴇ sᴛᴜᴅʏ Tᴇᴀᴍ Collaboration, Nucl. Part. Phys. Proc. 273-275, 1883 (2016), arXiv: 1411.5230

  • [343]

    J. N. Ding, Q. Qin, and F. S. Yu, Eur. Phys. J. C 79, 766 (2019), arXiv: 1903.02570

  • [344]

    Y. F. Shen, J. N. Ding, and Q. Qin, Eur. Phys. J. C 82, 398 (2022), arXiv: 2201.05831

  • [345]

    H. C. Cheng, L. Li, and E. Salvioni, JHEP 01, 122 (2022), arXiv: 2110.10691

  • [346]

    L. Calibbi, D. Redigolo, R. Ziegler et al., JHEP 09, 173 (2021), arXiv: 2006.04795

  • [347]

    Bᴇʟʟᴇ-II Collaboration, Phys. Rev. Lett. 130, 181803 (2023), arXiv: 2212.03634

  • [348]

    T. H. Kwok, L. Li, T. Liu et al., Lepton-Flavor-Violating Productions of Axion-like Particle at Future \begin{document}$e^{-}e^{+}$\end{document} Colliders (Preliminary)

  • [349]

    A. Blondel et al., Front. in Phys. 10, 967881 (2022), arXiv: 2203.05502

  • [350]

    H. C. Cheng, X. H. Jiang, and L. Li, Phenomenology of Electroweak Portal Dark Showers: High Energy Direct Probes and Low Energy Complementarity, arXiv: 2408.13304

  • [351]

    J. F. Kamenik and C. Smith, JHEP 03, 090 (2012), arXiv: 1111.6402

  • [352]

    H. C. Cheng, X. H. Jiang, L. Li et al., JHEP 04, 081 (2024), arXiv: 2401.08785

  • [353]

    L. Calibbi, F. Goertz, D. Redigolo et al., Phys. Rev. D 95, 095009 (2017), arXiv: 1612.08040

  • [354]

    D. Aloni, C. Fanelli, Y. Soreq et al., Phys. Rev. Lett. 123, 071801 (2019), arXiv: 1903.03586

  • [355]

    J. M. Camalich, M. Pospelov, P. N. H. Vuong et al., Phys. Rev. D 102, 015023 (2020), arXiv: 2002.04623

  • [356]

    LHCʙ Collaboration, Phys. Rev. D 95, 071101 (2017), arXiv: 1612.07818

  • [357]

    LHCʙ Collaboration, JHEP 10, 156 (2020), arXiv: 2007.03923

  • [358]

    CLEO Collaboration, Phys. Rev. Lett. 87, 271801 (2001), arXiv: hep-ex/0106038

  • [359]

    H. Liang, Y. Zhu, and M. Ruan, Measurement of \begin{document}$V_{cb}$\end{document} from \begin{document}$WW\to\mu\nu qq$\end{document} at the CEPC, Talk at CEPC Flavor Physics Discussion, (2023)

  • [360]

    Y. X. Wang, H. Liang, Y. F. Zhu et al., Comput. Phys. Commun. 314, 109661 (2025), arXiv: 2411.06939

  • [361]

    A. Akeroyd and C. H. Chen, Phys. Rev. D 96, 075011 (2017), arXiv: 1708.04072

  • [362]

    LHCʙ Collaboration, Phys. Rev. Lett. 120, 121801 (2018), arXiv: 1711.05623

  • [363]

    LHCʙ Collaboration, Phys. Rev. Lett. 128, 191803 (2022), arXiv: 2201.03497

  • [364]

    ATLAS Collaboration, Eur. Phys. J. C 81, 342 (2021), arXiv: 2001.07115

  • [365]

    ATLAS Collaboration, Phys. Rev. D 90, 072010 (2014), arXiv: 1408.5774

  • [366]

    ATLAS Collaboration, Nature Phys. 17, 819 (2021), arXiv: 2010.02566

  • [367]

    M. Ilyushin, P. Mandrik, and S. Slabospitskii, Nucl. Phys. B 952, 114921 (2020)

  • [368]

    L. Li, Y.-Y. Li, T. Liu et al., JHEP 10, 018 (2020), arXiv: 2004.15013

  • [369]

    A. J. Buras, Phys. Rept. 1025, 1-64 (2023), arXiv: 1102.5650

  • [370]

    A. Buras, Gauge Theory of Weak Decays, (Cambridge University Press, 6, 2020), https://doi.org/10.1017/9781139524100

  • [371]

    T. Aoyama et al., Phys. Rept. 887, 1 (2020), arXiv: 2006.04822