Probing CP violation in e+e− production of the Higgs boson and toponia
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[1] M. Buckley,et al. Boosting the Direct CP Measurement of the Higgs-Top Coupling. , 2015, Physical review letters.
[2] T. Farooque,et al. Probing a light CP-odd scalar in di-top-associated production at the LHC , 2015, 1507.07004.
[3] K. Kołodziej,et al. Probing the top-Higgs coupling through the secondary lepton distributions in the associated production of the top-quark pair and Higgs boson at the LHC , 2015, 1507.01572.
[4] X. He,et al. Probing Higgs boson CP properties with tt̄H at the LHC and the 100 TeV pp collider , 2014, 1501.00012.
[5] Kentarou Mawatari,et al. Higgs characterisation at NLO in QCD: CP properties of the top-quark Yukawa interaction , 2014, The European physical journal. C, Particles and fields.
[6] P. Harris,et al. Constraining CP-violating Higgs sectors at the LHC using gluon fusion. , 2014, 1406.3322.
[7] Lei Wu,et al. Anomalous top-Higgs couplings and top polarisation in single top and Higgs associated production at the LHC , 2014, 1406.1961.
[8] I. Low,et al. New Observables for CP Violation in Higgs Decays , 2014, 1405.6723.
[9] V. M. Ghete,et al. Measurement of the properties of a Higgs boson in the four-lepton final state , 2014 .
[10] R. Harnik,et al. Probing the Higgs couplings to photons in h→4ℓ at the LHC. , 2014, Physical review letters.
[11] S. Zelditch,et al. Stability and integration over Bergman metrics , 2014, 1404.0659.
[12] J. Zupan,et al. Probing CP violation in h → γγ with converted photons , 2013, Journal of High Energy Physics.
[13] John Ellis,et al. Disentangling Higgs-top couplings in associated production , 2013, 1312.5736.
[14] A. Shivaji,et al. ttH anomalous coupling in double Higgs production , 2013, 1309.6907.
[15] Tatsuo C. Kobayashi,et al. Flavor landscape of 10D SYM theory with magnetized extra dimensions , 2013, 1307.1831.
[16] C. Collaboration,et al. Measurement of the properties of a Higgs boson in the four-lepton final state , 2013, 1312.5353.
[17] Jure Zupan,et al. Constraints on CP-violating Higgs couplings to the third generation , 2013, 1310.1385.
[18] W. Bernreuther,et al. Higgs CP properties using the τ decay modes at the ILC , 2013, 1308.2674.
[19] J. T. Childers,et al. Evidence for the spin-0 nature of the Higgs boson using ATLAS data , 2013, 1307.1432.
[20] K. Mawatari,et al. A framework for Higgs characterisation , 2013, 1306.6464.
[21] A. Savoy-Navarro,et al. The International Linear Collider Technical Design Report - Volume 2: Physics , 2013, 1306.6352.
[22] Yue Zhang,et al. Impact of a CP-violating Higgs sector: from LHC to baryogenesis. , 2013, Physical review letters.
[23] J. Ellis,et al. Updated global analysis of Higgs couplings , 2013, 1303.3879.
[24] V. M. Ghete,et al. Study of the mass and spin-parity of the Higgs boson candidate via its decays to Z boson pairs. , 2012, Physical review letters.
[25] A. Korchin,et al. HIGGS BOSON DECAY TO γZ AND TEST OF CP AND CPT SYMMETRIES , 2013 .
[26] Felix Yu,et al. Measuring CP Violation in h→ τ+τ− at Colliders , 2013 .
[27] 亮 与那嶺,et al. Measuring the top Yukawa coupling at the ILC at √s=500 GeV and R&D for the ILD-TPC , 2012 .
[28] N. Tran,et al. Spin and parity of a single-produced resonance at the LHC , 2012, 1208.4018.
[29] The Cms Collaboration. Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC , 2012, 1207.7235.
[30] W. Bernreuther,et al. How to pin down the CP quantum numbers of a Higgs boson in its tau decays at the LHC , 2011, 1108.0670.
[31] F. Maltoni,et al. MadGraph 5: going beyond , 2011, 1106.0522.
[32] Y. Sumino,et al. Bound-state effects on kinematical distributions of top quarks at hadron colliders , 2010, 1007.0075.
[33] W. Bernreuther,et al. Pseudoscalar Higgs bosons at the LHC: production and decays into electroweak gauge bosons revisited , 2010, 1003.5585.
[34] W. Bernreuther,et al. Determining the CP parity of Higgs bosons at the LHC in the τ to 1-prong decay channels , 2008, 0812.1910.
[35] W. Bernreuther,et al. Determining the CP parity of Higgs bosons at the LHC in their tau decay channels , 2008, 0801.2297.
[36] S. Rindani,et al. Determining the CP properties of the Higgs boson. , 2007, Physical review letters.
[37] S. Rindani,et al. Probing CP properties of the Higgs Boson via e + e ! t¯ t , 2007 .
[38] A. Hoang,et al. Large Higgs energy region in Higgs associated top pair production at the Linear Collider , 2005, hep-ph/0504220.
[39] K. Desch,et al. Measuring the Higgs boson parity at a Linear Collider using τ impact parameter and τ → ρν decay , 2003 .
[40] G. Bower,et al. Measuring the Higgs boson's parity using τ→ρν , 2002, hep-ph/0204292.
[41] C. Nelson,et al. CP determination for new spin zero mesons by the ττ decay mode , 1989 .
[42] H. Bethe,et al. A Relativistic equation for bound state problems , 1951 .
[43] J. Schwinger,et al. Variational Principles for Scattering Processes. I , 1950 .