Resonant Higgs boson pair production in the hh→bb¯WW→bb¯ℓ+νℓ−ν¯ decay channel
暂无分享,去创建一个
[1] S. Dawson,et al. Exploring resonant di-Higgs boson production in the Higgs singlet model , 2014, 1410.5488.
[2] Seodong Shin,et al. Singlet fermionic dark matter , 2008, 0803.2932.
[3] R. Webb,et al. First results from the LUX dark matter experiment at the Sanford underground research facility. , 2013, Physical review letters.
[4] M. Cacciari,et al. The anti-$k_t$ jet clustering algorithm , 2008, 0802.1189.
[5] S. Dawson,et al. Hiding the Higgs Boson with Multiple Scalars , 2009, 0904.2005.
[6] D. Zerwas,et al. LHC: Standard Higgs and hidden Higgs , 2011, 1112.3007.
[7] Chan Beom Park,et al. Measuring superparticle masses at hadron collider using the transverse mass kink , 2007, 0711.4526.
[8] Lian-tao Wang,et al. Exploring the Higgs portal with 10 fb−1 at the LHC , 2011, 1112.5180.
[9] P. Fox,et al. Higgs friends and counterfeits at hadron colliders , 2011, 1104.5450.
[10] M. Pospelov,et al. Singlet neighbors of the Higgs boson , 2012, 1207.6252.
[11] Michal Czakon,et al. Top++: A program for the calculation of the top-pair cross-section at hadron colliders , 2011, Comput. Phys. Commun..
[12] K. Kainulainen,et al. Electroweak baryogenesis and dark matter from a singlet Higgs , 2012, 1210.4196.
[13] Carroll L. Wainwright,et al. Singlet-catalyzed electroweak phase transitions and precision Higgs boson studies , 2014, 1407.5342.
[14] Matthew J. Dolan,et al. New physics in LHC Higgs boson pair production , 2012, 1210.8166.
[15] C. Englert,et al. Evasive Higgs Maneuvers at the LHC , 2011 .
[16] J. Huston,et al. New parton distributions for collider physics , 2010, 1007.2241.
[17] S. Meola,et al. Minimal spontaneously broken hidden sector and its impact on Higgs boson physics at the Large Hadron Collider , 2008 .
[18] J. Wells,et al. Higgs boson search significance deformations due to mixed-in scalars , 2011, 1110.0824.
[19] Chan Beom Park,et al. M-T2-assisted on-shell reconstruction of missing momenta and its application to spin measurement at the LHC , 2008, 0810.4853.
[20] A. Ashoorioon,et al. Strong electroweak phase transitions without collider traces , 2009, 0904.0353.
[21] Jae Sik Lee,et al. Measuring the Higgs boson mass with transverse mass variables , 2010, 1008.2690.
[22] Chan Beom Park,et al. Measuring the top quark mass with m_T2 at the LHC , 2008, 0804.2185.
[23] Yu-feng Zhou,et al. Strongly first order phase transition in the singlet fermionic dark matter model after LUX , 2014, 1402.3087.
[24] S. Baek,et al. Search for the Higgs portal to a singlet fermionic dark matter at the LHC , 2011, 1112.1847.
[25] Jae Sik Lee,et al. Reconstructing the Higgs boson in dileptonic W decays at hadron colliders , 2009, 0908.0079.
[26] C. Jackson,et al. Measuring the two-Higgs doublet model scalar potential at LHC14 , 2014, 1408.2525.
[27] Hill,et al. Strongly interacting singlet-doublet Higgs model. , 1987, Physical review. D, Particles and fields.
[28] R. Lafaye,et al. Measuring Hidden Higgs and Strongly-Interacting Higgs Scenarios , 2010, 1007.2645.
[29] C. Lester,et al. Measuring masses of semi-invisibly decaying particles pair produced at hadron colliders , 1999, hep-ph/9906349.
[30] T. Robens,et al. Δr and the W-boson mass in the singlet extension of the standard model , 2014, 1406.1043.
[31] Oscar Stål,et al. Probing the Standard Model with Higgs signal rates from the Tevatron, the LHC and a future ILC , 2014, 1403.1582.
[32] G. M. Pruna,et al. Higgs singlet extension parameter space in the light of the LHC discovery , 2013, 1303.1150.
[33] M. Cacciari,et al. FastJet user manual , 2011, 1111.6097.
[34] Tilman Plehn,et al. Exploring the Higgs portal , 2011, 1106.3097.
[35] Yanou Cui,et al. Narrow trans-TeV Higgs bosons and H→hh decays: two LHC search paths for a hidden sector Higgs boson , 2007 .
[36] R. Lafaye,et al. Simulation of neutral Higgs pairs production processes in PYTHIA using HPAIR matrix elements , 2002 .
[37] Michal Czakon,et al. ZFITTER: a semi-analytical program for fermion pair production in e+e- annihilation, from version 6.21 to version 6.42 , 2006, Comput. Phys. Commun..
[38] The Aleph Collaboration,et al. Precision electroweak measurements on the Z resonance , 2005, hep-ex/0509008.
[39] A. Barr,et al. mTGen: mass scale measurements in pair-production at colliders , 2007, 0708.1028.
[40] R. B. Barreiro,et al. Planck 2013 results , 2014 .
[41] Michael Spira,et al. Neutral Higgs-Boson Pair Production at Hadron Colliders: QCD Corrections , 1998 .
[42] Paul Langacker,et al. Complex Singlet Extension of the Standard Model , 2008, 0811.0393.
[43] Chan Beom Park,et al. Transverse mass for pairs of gluinos. , 2007, Physical review letters.
[44] J. No,et al. Probing the Higgs Portal at the LHC Through Resonant di-Higgs Production , 2013, 1310.6035.
[45] T. Plehn,et al. PAIR PRODUCTION OF NEUTRAL HIGGS PARTICLES IN GLUON-GLUON COLLISIONS , 1996 .
[46] M. Fairbairn,et al. Singlet fermionic dark matter and the electroweak phase transition , 2013, 1305.3452.
[47] M. Bilenky,et al. ZFITTER v.6.21: A semi-analytical program for fermion pair production in e+e- annihilation , 1999, hep-ph/9908433.
[48] E. Senaha,et al. Vacuum structure and stability of a singlet fermion dark matter model with a singlet scalar messenger , 2012, 1209.4163.
[49] C. Jackson,et al. Measuring the two-Higgs doublet model scalar potential at LHC14 , 2014 .
[50] M. Baak,et al. The global electroweak fit at NNLO and prospects for the LHC and ILC , 2014, 1407.3792.
[51] G. Bhattacharyya,et al. Universal doublet-singlet Higgs couplings and phenomenology at the CERN Large Hadron Collider , 2007, 0712.2693.
[52] J. Butterworth,et al. Ju n 20 08 Jet substructure as a new Higgs search channel at the LHC , 2008 .
[53] M. Bilenky,et al. Analytic approach to the complete set of QED corrections to fermion pair production in e+ e- annihilation , 1991, hep-ph/9801208.
[54] U. Baur,et al. Probing the Higgs self-coupling at hadron colliders using rare decays , 2003, hep-ph/0310056.
[55] C. Jackson,et al. New physics in resonant production of Higgs boson pairs. , 2014, Physical review letters.
[56] A. Barr,et al. Measuring the Higgs boson mass in dileptonic W -boson decays at hadron colliders , 2009, 0902.4864.
[57] Mcdonald. Gauge singlet scalars as cold dark matter. , 1994, Physical review. D, Particles and fields.
[58] David J. Miller,et al. Handbook of LHC Higgs Cross Sections: 3. Higgs Properties , 2013, 1307.1347.
[59] The XENON1T Dark Matter Search Experiment , 2019 .
[60] T. Stefaniak,et al. Status of the Higgs singlet extension of the standard model after LHC run 1 , 2015, 1501.02234.
[61] Francesco Riva,et al. Strong electroweak phase transitions in the Standard Model with a singlet , 2011, 1107.5441.
[62] Chan Beom Park. Reconstructing the heavy resonance at hadron colliders , 2011, 1106.6087.
[63] H. Thacker,et al. Weak interactions at very high energies: The role of the Higgs-boson mass , 1977 .
[64] T. Binoth,et al. Influence of strongly coupled, hidden scalars on Higgs signals , 1997 .
[65] A. Strumia,et al. Stabilization of the electroweak vacuum by a scalar threshold effect , 2012, 1203.0237.
[66] The L3 Collaboration , 1999 .
[67] M. Peskin. Estimation of LHC and ILC Capabilities for Precision Higgs Boson Coupling Measurements , 2013, 1312.4974.
[68] Nicola De Filippis,et al. Electroweak measurements in electron positron collisions at W-boson-pair energies at LEP , 2013 .
[69] Alexander Belyaev,et al. CalcHEP 3.4 for collider physics within and beyond the Standard Model , 2012, Comput. Phys. Commun..
[70] Paul Langacker,et al. CERN LHC phenomenology of an extended standard model with a real scalar singlet , 2007, 0706.4311.
[71] D. Bertolini,et al. The social Higgs , 2012, 1207.4209.
[72] A. Barr,et al. m(T2): The Truth behind the glamour , 2003, hep-ph/0304226.
[73] Hsin-Chia Cheng,et al. Minimal kinematic constraints and m T2 , 2008, 0810.5178.
[74] S. Rosier-Lees,et al. Indirect search for dark matter with micrOMEGAs_2.4 , 2010, Comput. Phys. Commun..