Prospects for ditauonium discovery at colliders
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[1] D. d’Enterria,et al. gamma-UPC: automated generation of exclusive photon-photon processes in ultraperipheral proton and nuclear collisions with varying form factors , 2022, Journal of High Energy Physics.
[2] D. d’Enterria,et al. Ditauonium spectroscopy , 2022, The European Physical Journal C.
[3] D. Schulte,et al. The CLIC project , 2022, 2203.09186.
[4] David W. Miller,et al. The International Linear Collider: Report to Snowmass 2021 , 2022, 2203.07622.
[5] I. Grabowska-Bold,et al. Opportunities for new physics searches with heavy ions at colliders , 2022, Journal of Physics G: Nuclear and Particle Physics.
[6] D. d’Enterria,et al. Observing true tauonium via two-photon fusion at $e^+e^-$ and hadron colliders , 2022, 2202.02316.
[7] S. Frixione,et al. Lepton collisions in MadGraph5_aMC@NLO , 2021, 2108.10261.
[8] D. d’Enterria,et al. Measuring the electron Yukawa coupling via resonant s-channel Higgs production at FCC-ee , 2021, The European Physical Journal Plus.
[9] D. d’Enterria. Collider constraints on axion-like particles , 2021, 2102.08971.
[10] V. Telnov. Monochromatization of $e^+e^-$ colliders with a large crossing angle , 2020, 2008.13668.
[11] A. B. Kaliyar,et al. $\tau$ lepton mass measurement at Belle II , 2020, 2008.04665.
[12] N. Muchnoi,et al. C.M.S. energy calibration in BES-III and VEPP-2000 experiments , 2020, Journal of Instrumentation.
[13] M. Casarsa,et al. Detector and Physics Performance at a Muon Collider , 2020, Journal of Instrumentation.
[14] Li-Yu Daisy Liu,et al. Future Physics Programme of BESIII , 2019, Chinese Physics C.
[15] M. Cacciari,et al. The partonic structure of the electron at the next-to-leading logarithmic accuracy in QED , 2019, Journal of High Energy Physics.
[16] M. Dorigo,et al. Search for $A'\to\mu^+\mu^-$ Decays , 2019, 1910.06926.
[17] S. Frixione. Initial conditions for electron and photon structure and fragmentation functions , 2019, Journal of High Energy Physics.
[18] K. Mawatari,et al. Automated simulations beyond the Standard Model: supersymmetry , 2019, Journal of High Energy Physics.
[19] J. T. Childers,et al. FCC-ee: The Lepton Collider , 2019, The European Physical Journal Special Topics.
[20] M. Achasov,et al. Tau mass measurement at BES-III , 2019, EPJ Web of Conferences.
[21] Nicola De Filippis,et al. Future Circular Collider : Vol. 1 Physics opportunities , 2018 .
[22] S. Bifani,et al. Review of lepton universality tests in B decays , 2018, Journal of Physics G: Nuclear and Particle Physics.
[23] T. Aushev,et al. The Belle II Physics Book , 2018, Progress of Theoretical and Experimental Physics.
[24] I. A. Monroy,et al. Physics case for an LHCb Upgrade II - Opportunities in flavour physics, and beyond, in the HL-LHC era , 2018, 1808.08865.
[25] Atlas Collaboration. Search for long-lived particles in final states with displaced dimuon vertices in pp collisions at s=13 TeV with the ATLAS detector , 2018, 1808.03057.
[26] J. Seixas,et al. A fixed-target programme at the LHC: Physics case and projected performances for heavy-ion, hadron, spin and astroparticle studies , 2018, 1807.00603.
[27] S. Jadach,et al. Relativistic Voigt profile for unstable particles in high energy physics , 2017, Journal of Mathematical Analysis and Applications.
[28] E. Levichev,et al. Low-energy electron-positron collider to search and study (\mu^+\mu^-) bound state , 2017, 1708.05819.
[29] Li-Yu Daisy Liu,et al. Dark photon search in the mass range between 1.5 and 3.4 GeV/c2 , 2017, Physics Letters B.
[30] Hua-Sheng Shao,et al. HELAC-Onia 2.0: An upgraded matrix-element and event generator for heavy quarkonium physics , 2015, Comput. Phys. Commun..
[31] J. Huston,et al. New parton distribution functions from a global analysis of quantum chromodynamics , 2015, 1506.07443.
[32] V. M. Ghete,et al. Search for long-lived particles that decay into final states containing two electrons or two muons in proton-proton collisions at √s = 8 TeV , 2015 .
[33] D. Leith,et al. Search for a Dark Photon ine+e-Collisions atBaBar , 2014, 1406.2980.
[34] R. Frederix,et al. The automated computation of tree-level and next-to-leading order differential cross sections, and their matching to parton shower simulations , 2014, 1405.0301.
[35] H. Shao. Initial state radiation effects in inclusive J/ψ production at B factories , 2014, Journal of High Energy Physics.
[36] H. Shao. Initial state radiation effects in inclusive J/ψ production at B factories , 2014, 1402.5840.
[37] A. Bondar,et al. Project of a Super Charm-Tau factory at the Budker Institute of Nuclear Physics in Novosibirsk , 2013 .
[38] D. d’Enterria,et al. Observing light-by-light scattering at the Large Hadron Collider. , 2013, Physical Review Letters.
[39] Hua-Sheng Shao,et al. HELAC-Onia: An automatic matrix element generator for heavy quarkonium physics , 2012, Comput. Phys. Commun..
[40] Q.Qin,et al. The beam energy measurement system for the Beijing electron-positron collider , 2011, 1109.5771.
[41] S. Asai,et al. Search for CP violation in positronium decay. , 2009, Physical review letters.
[42] A. Goshaw. The ATLAS Experiment at the CERN Large Hadron Collider , 2008 .
[43] João Paulo Teixeira,et al. The CMS experiment at the CERN LHC , 2008 .
[44] S. A. Sadovsky,et al. The physics of ultraperipheral collisions at the LHC , 2007, 0706.3356.
[45] S. Karshenboim. Precision physics of simple atoms: QED tests, nuclear structure and fundamental constants , 2005, hep-ph/0509010.
[46] H. N. Kim,et al. The ALICE experiment at the CERN LHC , 2003 .
[47] Alan D. Martin,et al. Review of Particle Physics , 2000, Physical Review D.
[48] R. Kleiss,et al. WW Cross-sections and Distributions , 1996, hep-ph/9602351.
[49] E. Eichten,et al. Quarkonium wave functions at the origin. , 1995, Physical review. D, Particles and fields.
[50] E. Braaten,et al. Rigorous QCD analysis of inclusive annihilation and production of heavy quarkonium. , 1994, Physical review. D, Particles and fields.
[51] Technology of China,et al. Measurement of the mass of the tau lepton. , 1992, Physical review letters.
[52] W. Bernreuther,et al. How to testCP, T, andCPT invariance in the three photon decay of polarized3S1 positronium , 1988 .
[53] Y. Koide. New view of quark and lepton mass hierarchy , 1983 .
[54] E. Ley-Koo,et al. Comments on the observability of tauonium , 1979 .
[55] R. Montemayor,et al. Tauonium: τ+τ- a bound state of heavy leptons , 1978 .
[56] J. Moffat. Does a Heavy Positronium Atom Exist , 1975 .
[57] R. Prepost,et al. Formation of Muonium and Observation of its Larmor Precession , 1960 .
[58] M. Deutsch. EVIDENCE FOR THE FORMATION OF POSITRONIUM IN GASES , 1951 .
[59] C. Yang. Selection Rules for the Dematerialization of a Particle into Two Photons , 1950 .
[60] L. Landau. On the angular momentum of a system of two photons , 1948 .
[61] Xiaorong Zhou. Experimental Program at Super Tau-Charm Facility , 2021 .
[62] Y. Mo,et al. Precision measurement of the mass of the τ lepton , 2014 .
[63] Richard Loveless,et al. Search for decays , 2012 .