Signals of the electroweak phase transition at colliders and gravitational wave observatories
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[1] O. Eberhardt,et al. Current and future constraints on Higgs couplings in the nonlinear Effective Theory , 2018, Journal of High Energy Physics.
[2] Minho Son,et al. Combined analysis of double Higgs production via gluon fusion at the HL-LHC in the effective field theory approach , 2018, Physical Review D.
[3] M. Chala,et al. LHC signals of radiatively-induced neutrino masses and implications for the Zee-Babu model , 2017, 1710.05885.
[4] C. Lagger,et al. Low temperature electroweak phase transition in the Standard Model with hidden scale invariance , 2017, 1709.10322.
[5] B. Harling,et al. QCD-induced electroweak phase transition , 2017, Journal of High Energy Physics.
[6] J. Santiago,et al. Effective description of general extensions of the Standard Model: the complete tree-level dictionary , 2017, 1711.10391.
[7] Zhen Liu,et al. A global view on the Higgs self-coupling at lepton colliders , 2017, Journal of High Energy Physics.
[8] G. White,et al. Electroweak baryogenesis and the standard model effective field theory , 2017, 1710.04061.
[9] Q. Cao,et al. Testing the electroweak phase transition in scalar extension models at lepton colliders , 2017, 1708.04737.
[10] Lian-tao Wang,et al. Electroweak sphaleron with dimension-six operators , 2017, 1708.03061.
[11] Michael Spannowsky,et al. Maxi-sizing the trilinear Higgs self-coupling: how large could it be? , 2017, The European Physical Journal C.
[12] Christophe Grojean,et al. A global view on the Higgs self-coupling , 2017, 1704.01953.
[13] Gauthier Durieux,et al. Minimally extended SILH , 2017, 1703.10624.
[14] V. Sanz,et al. Composite Higgs Models after Run 2 , 2017, 1703.10190.
[15] G. Moore,et al. Electroweak bubble wall speed limit , 2017, 1703.08215.
[16] M. Trott,et al. On the non-minimal character of the SMEFT , 2016, 1612.02040.
[17] Jong Soo Kim,et al. CheckMATE 2: From the model to the limit , 2016, Comput. Phys. Commun..
[18] A. Celis,et al. Standard model extended by a heavy singlet: Linear vs. nonlinear EFT , 2016, 1608.03564.
[19] J. Rademacker,et al. Review of Multibody Charm Analyses , 2016 .
[20] K. Ghosh,et al. Neutrino Mass Generation and 750 GeV Diphoton excess via photon-photon fusion at the Large Hadron Collider , 2016, 1607.01910.
[21] M. Laine,et al. Basics of Thermal Field Theory: A Tutorial on Perturbative Computations , 2016 .
[22] Cms Collaborations. Measurements of the Higgs boson production and decay rates and constraints on its couplings from a combined ATLAS and CMS analysis of the LHC $pp$ collision data at $\sqrt{s}=$ 7 and 8 TeV , 2016 .
[23] M. Chala,et al. Unified explanation for dark matter and electroweak baryogenesis with direct detection and gravitational wave signatures , 2016, 1605.08663.
[24] G. Passarino,et al. The Standard Model Effective Field Theory and Next to Leading Order , 2016, 1610.08356.
[25] A. Celis,et al. Comment on "Analysis of General Power Counting Rules in Effective Field Theory" , 2016, 1603.03062.
[26] E. Jenkins,et al. Analysis of general power counting rules in effective field theory , 2016, 1601.07551.
[27] A. Celis,et al. Fitting Higgs data with nonlinear effective theory , 2015, The European physical journal. C, Particles and fields.
[28] A. Randle-conde,et al. Measurements of the Higgs boson production and decay rates and constraints on its couplings from a combined ATLAS and CMS analysis of the LHC pp collision data at √s = 7 and 8 TeV , 2016 .
[29] Antoine Petiteau,et al. Science with the space-based interferometer eLISA. II: gravitational waves from cosmological phase transitions , 2015, 1512.06239.
[30] A. Tranberg,et al. Effective field theory and electroweak baryogenesis in the singlet-extended Standard Model , 2015, 1512.01963.
[31] Andreas Papaefstathiou,et al. Triple Higgs boson production at a 100 TeV proton-proton collider , 2015, 1508.06524.
[32] R. Contino,et al. Effective field theory analysis of double Higgs boson production via gluon fusion , 2015 .
[33] Giuliano Panico,et al. The Composite Nambu-Goldstone Higgs , 2015, 1506.01961.
[34] L. Vecchi. A dangerous irrelevant UV-completion of the composite Higgs , 2015, 1506.00623.
[35] J. Streicher,et al. NLO QCD corrections to Higgs pair production including dimension-6 operators , 2015, 1504.06577.
[36] G. Buchalla,et al. Note on anomalous Higgs-boson couplings in effective field theory , 2015, 1504.01707.
[37] H. Logan,et al. All the generalized Georgi-Machacek models , 2015, 1502.01275.
[38] M. Chala,et al. Observable effects of general new scalar particles , 2014, 1412.8480.
[39] O. Catà,et al. A systematic approach to the SILH Lagrangian , 2014, 1412.6356.
[40] A. Mégevand,et al. Hydrodynamics of phase transition fronts and the speed of sound in the plasma , 2014, 1410.3875.
[41] Robert Feger,et al. LieART - A Mathematica application for Lie algebras and representation theory , 2012, Comput. Phys. Commun..
[42] G. Nardini,et al. From Boltzmann equations to steady wall velocities , 2014, 1407.3132.
[43] 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.
[44] O. Catà,et al. On the power counting in effective field theories , 2013, 1312.5624.
[45] D. Karateev,et al. Fermionic UV completions of composite Higgs models , 2013, 1312.5330.
[46] Claude Duhr,et al. FeynRules 2.0 - A complete toolbox for tree-level phenomenology , 2013, Comput. Phys. Commun..
[47] Florian Staub,et al. SARAH 4: A tool for (not only SUSY) model builders , 2013, Comput. Phys. Commun..
[48] M. Campanelli,et al. First look at the physics case of TLEP , 2013, 1308.6176.
[49] Claudius Krause,et al. Complete electroweak chiral Lagrangian with a light Higgs at NLO , 2013, 1307.5017.
[50] Michael Trott,et al. Renormalization group evolution of the Standard Model dimension six operators III: gauge coupling dependence and phenomenology , 2013, Journal of High Energy Physics.
[51] J. Blas. Electroweak limits on physics beyond the Standard Mode , 2013, 1307.6173.
[52] S. Huber,et al. An efficient approach to electroweak bubble velocities , 2013, 1302.1044.
[53] Lian-tao Wang,et al. 125 GeV Higgs boson and electroweak phase transition model classes , 2012, 1209.1819.
[54] Michelle R. Murphy,et al. A Systematic Approach to , 2013 .
[55] M. B. Gavela,et al. The Effective Chiral Lagrangian for a Light Dynamical "Higgs" , 2012, 1212.3305.
[56] M. Ramsey-Musolf,et al. Electroweak baryogenesis , 2012, 1206.2942.
[57] L. G. Boté,et al. Laser Interferometer Space Antenna , 2012 .
[58] O. Catà,et al. Effective theory of a dynamically broken electroweak Standard Model at NLO , 2012, 1203.6510.
[59] Roberto Contino,et al. Model-independent bounds on a light Higgs , 2012, 1202.3415.
[60] Carroll L. Wainwright,et al. CosmoTransitions: Computing cosmological phase transition temperatures and bubble profiles with multiple fields , 2011, Comput. Phys. Commun..
[61] A. Simone,et al. Magnetic fields at first order phase transition: a threat to electroweak baryogenesis , 2011, 1107.4317.
[62] G. Servant,et al. Natural cold baryogenesis from strongly interacting electroweak symmetry breaking , 2011, 1104.4793.
[63] Hiren H. Patel,et al. Baryon washout, electroweak phase transition, and perturbation theory , 2011, 1101.4665.
[64] M. Misiak,et al. Dimension-six terms in the Standard Model Lagrangian , 2010, 1008.4884.
[65] G. Nardini,et al. Gravitational backreaction effects on the holographic phase transition , 2010, 1007.1468.
[66] Roberto Contino,et al. Tasi 2009 lectures: The Higgs as a Composite Nambu-Goldstone Boson , 2010, 1005.4269.
[67] C. Burgess,et al. On Higgs inflation and naturalness , 2010, 1002.2730.
[68] R. Rattazzi,et al. Strong double higgs production at the LHC , 2010, 1002.1011.
[69] K. Babu,et al. New mechanism for neutrino mass generation and triply charged Higgs bosons at the LHC , 2009, 0905.2710.
[70] D. Stojkovic,et al. Electroweak vacua, collider phenomenology, and possible connection with dark energy , 2009 .
[71] G. Moore,et al. Can electroweak bubble walls run away , 2009, 0903.4099.
[72] F. Ling,et al. Scalar multiplet dark matter , 2009, 0903.4010.
[73] B. Grinstein,et al. Electroweak baryogenesis with a pseudo-Goldstone Higgs boson , 2008, 0806.1971.
[74] Wang Qing,et al. Electroweak Chiral Lagrangian for Neutral Higgs Boson , 2008 .
[75] J. Wells,et al. Dynamics of non-renormalizable electroweak symmetry breaking , 2007, 0711.2511.
[76] A. Wulzer,et al. A Confining Strong First-Order Electroweak Phase Transition , 2007, 0706.3388.
[77] B. Grinstein,et al. Higgs-Higgs bound state due to new physics at a TeV , 2007, 0704.1505.
[78] C. Grojean,et al. The Strongly-Interacting Light Higgs , 2007, hep-ph/0703164.
[79] K. Babu,et al. Missing Partner Mechanism in SO(10) Grand Unification , 2006, hep-ph/0612315.
[80] L. Randall,et al. Gravitational waves from warped spacetime , 2006, hep-ph/0607158.
[81] S. Huber,et al. The Baryon asymmetry in the Standard Model with a low cut-off , 2004, hep-ph/0412366.
[82] J. Wells,et al. First-order electroweak phase transition in the standard model with a low cutoff , 2004, hep-ph/0407019.
[83] A. González-Arroyo,et al. Symmetry breaking and false vacuum decay after hybrid inflation , 2002, hep-ph/0208228.
[84] J. Smit,et al. Chern-Simons number asymmetry from CP violation at electroweak tachyonic preheating , 2002, hep-ph/0211243.
[85] R. Rattazzi,et al. Holography and the electroweak phase transition , 2001, hep-th/0107141.
[86] C. Burgess,et al. A Higgs or Not a Higgs? What to Do if You Discover a New Scalar Particle , 1999, hep-ph/9912459.
[87] S. Mrenna,et al. Pythia 6.3 physics and manual , 2003, hep-ph/0308153.
[88] J. García-Bellido,et al. Non-equilibrium electroweak baryogenesis from preheating after inflation , 1999, hep-ph/9902449.
[89] Case Western Reserve University,et al. Baryogenesis below the electroweak scale , 1999, hep-ph/9902420.
[90] M. Quirós. Finite temperature field theory and phase transitions , 1999, hep-ph/9901312.
[91] Z. Fodor,et al. End Point of the Hot Electroweak Phase Transition , 1998, hep-ph/9809291.
[92] M. Laine,et al. What's new with the electroweak phase transition?☆ , 1998, hep-lat/9809045.
[93] Moscow,et al. The universality class of the electroweak theory , 1998, hep-lat/9805013.
[94] M. Trodden. Electroweak Baryogenesis , 1998, hep-ph/9803479.
[95] M. Shaposhnikovc,et al. The Universality Class of the Electroweak Theory , 1998 .
[96] Heidelberg,et al. Is There a Hot Electroweak Phase Transition at mH >~ mW? , 1996, Physical review letters.
[97] Koulovassilopoulos,et al. Phenomenology of a nonstandard Higgs boson in WLWL scattering. , 1993, Physical review. D, Particles and fields.
[98] Turner,et al. Gravitational radiation from first-order phase transitions. , 1993, Physical review. D, Particles and fields.
[99] M. Herrero,et al. The Electroweak chiral Lagrangian for the Standard Model with a heavy Higgs , 1993, hep-ph/9308276.
[100] Bagger,et al. Strongly interacting WW system: Gold-plated modes. , 1993, Physical review. D, Particles and fields.
[101] Babu,et al. Natural suppression of Higgsino-mediated proton decay in supersymmetric SO(10). , 1993, Physical review. D, Particles and fields.
[102] G. Dvali. Why is the Higgs doublet light , 1993 .
[103] R. Chivukula,et al. Phenomenology of a non-standard Higgs , 1993, hep-ph/9304293.
[104] Zhang. Operator analysis for the Higgs potential and cosmological bound on the Higgs-boson mass. , 1993, Physical review. D, Particles and fields.
[105] F. Feruglio. The Chiral Approach to the Electroweak Interactions , 1993, hep-ph/9301281.
[106] A. Dobado,et al. Chiral lagrangians as a tool to probe the symmetry breaking sector of the SM at LEP , 1991 .
[107] C. Hogan. Gravitational radiation from cosmological phase transitions , 1986 .
[108] H. Georgi,et al. Doubly charged Higgs bosons , 1985 .
[109] E. Witten. Cosmic separation of phases , 1984 .
[110] D. Nanopoulos,et al. Naturally massless Higgs doublets in supersymmetric SU(5) , 1982 .
[111] H. Georgi. An almost realistic gauge hierarchy , 1982 .
[112] R. Slansky. Group theory for unified model building , 1981 .
[113] E. Witten. Mass Hierarchies in Supersymmetric Theories , 1981 .
[114] A. C. Longhitano. Low-energy impact of a heavy Higgs boson sector , 1981 .
[115] T. Appelquist,et al. Strongly interacting Higgs bosons , 1980 .