Supersymmetry and LHC missing energy signals
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James Osborne | Carlos E. M. Wagner | M. Carena | C. Wagner | N. Shah | Marcela Carena | Nausheen R. Shah | J. Osborne
[1] T. R. Fernandez Perez Tomei,et al. Search for natural and split supersymmetry in proton-proton collisions at s=13$$ \sqrt{s}=13 $$ TeV in final states with jets and missing transverse momentum , 2018, 1802.02110.
[2] G. G. Stokes. "J." , 1890, The New Yale Book of Quotations.
[3] S. Heinemeyer,et al. High-precision predictions for the light CP-even Higgs boson mass of the minimal supersymmetric standard model. , 2014, Physical review letters.
[4] J. Hisano,et al. Charge-breaking constraints on left-right mixing of stau's , 2010, 1011.0260.
[5] A. Chapelain. The Muon g-2 experiment at Fermilab , 2017, 1701.02807.
[6] C. J. Chen,et al. Dark Matter Search Results from the PICO-60 C_{3}F_{8} Bubble Chamber. , 2017, Physical review letters.
[7] K. Hagiwara,et al. 10 GeV neutralino dark matter and light stau in the MSSM , 2013, 1308.6738.
[8] L. Maiani,et al. The muon anomalous magnetic moment in broken supersymmetric theories , 1982 .
[9] Howard E. Haber,et al. The Search for Supersymmetry: Probing Physics Beyond the Standard Model , 1985 .
[10] Muon anomalous magnetic moment: A harbinger for ''new physics'' , 2001, hep-ph/0102122.
[11] M. Carena,et al. Electroweak symmetry breaking and bottom-top Yukawa unification , 1994, hep-ph/9402253.
[12] T. Aushev,et al. Evidence for B- → τ- ν(τ) with a hadronic tagging method using the full data sample of Belle. , 2012, Physical review letters.
[13] M. Carena,et al. Higgs portals for thermal Dark Matter. EFT perspectives and the NMSSM , 2017, Journal of High Energy Physics.
[14] A. Buras,et al. Anatomy and phenomenology of FCNC and CPV effects in SUSY theories , 2009, 0909.1333.
[15] Searches for supersymmetric particles in $e^+e^-$ collisions up to 208~GeV, , 2003, hep-ex/0311019.
[16] E Aprile,et al. Dark Matter Search Results from a One Ton-Year Exposure of XENON1T. , 2018, Physical review letters.
[17] Alan D. Martin,et al. (g-2)_mu and alpha(M_Z^2) re-evaluated using new precise data , 2011, 1105.3149.
[18] A. Vainshtein,et al. H adronic Light{by{Light Scattering C ontribution to the M uon A nom alous M agnetic M om ent , 2009, 0901.0306.
[19] Sahal Yacoob,et al. Search for squarks and gluinos in final states with jets and missing transverse momentum using 36 fb$^{-1}$ of $\sqrt{s}$=13 TeV $pp$ collision data with the ATLAS detector , 2017, 1712.02332.
[20] A Supersymmetry Primer , 1997, hep-ph/9709356.
[21] James D. Wells,et al. Muon anomalous magnetic dipole moment in supersymmetric theories , 2001 .
[22] C. Cheung,et al. NMSSM Interpretation of the Galactic Center Excess , 2014, 1406.6372.
[23] T. R. Fernandez Perez Tomei,et al. Searches for pair production of charginos and top squarks in final states with two oppositely charged leptons in proton-proton collisions at s=13$$ \sqrt{s}=13 $$ TeV , 2018, Journal of High Energy Physics.
[24] H. Nilles,et al. Supersymmetry, Supergravity and Particle Physics , 1984 .
[25] Final report of the E821 muon anomalous magnetic moment measurement at BNL , 2006, hep-ex/0602035.
[26] V. M. Ghete,et al. Search for top squarks decaying via four-body or chargino-mediated modes in single-lepton final states in proton-proton collisions at s=13$$ \sqrt{s}=13 $$ TeV , 2018, Journal of High Energy Physics.
[27] Zhen Liu,et al. Light neutralino dark matter: direct/indirect detection and collider searches , 2014, 1406.1181.
[28] L. Krauss,et al. Low energy supergravity and the anomalous magnetic moment of the muon , 1983 .
[29] The Delphi Collaboration. Searches for supersymmetric particles in e + e- collisions up to 208 GeV and interpretation of the results within the MSSM , 2003 .
[30] Hempfling,et al. Yukawa coupling unification with supersymmetric threshold corrections. , 1994, Physical review. D, Particles and fields.
[31] J. Chiang,et al. Searching for Dark Matter Annihilation from Milky Way Dwarf Spheroidal Galaxies with Six Years of Fermi Large Area Telescope Data. , 2015, Physical review letters.
[32] J. Naganoma,et al. Dark Matter Search Results from a One Ton-Year Exposure of XENON1T. , 2018, Physical review letters.
[33] M. Carena,et al. Minimal flavor violation and the scale of supersymmetry breaking , 2008, 0812.3594.
[34] J. Rademacker,et al. Review of Multibody Charm Analyses , 2016 .
[35] C. Rogan,et al. Recursive jigsaw reconstruction: HEP event analysis in the presence of kinematic and combinatoric ambiguities , 2017, 1705.10733.
[36] W. Gohn. THE MUON g-2 EXPERIMENT AT FERMILAB , 2016, Particle Physics at the Silver Jubilee of Lomonosov Conferences.
[37] T. Moroi. Muon anomalous magnetic dipole moment in the minimal supersymmetric standard model. , 1996, Physical review. D, Particles and fields.
[38] E. Bagnaschi,et al. Higgs mass and unnatural supersymmetry , 2014, 1407.4081.
[39] F. Gabbiani,et al. A complete analysis of FCNC and CP constraints in general SUSY extensions of the standard model , 1996, hep-ph/9604387.
[40] J. Caudron,et al. Search for supersymmetry in final states with missing transverse momentum and multiple b-jets in proton-proton collisions at s=13\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{up , 2018, Journal of High Energy Physics.
[41] J. Ellis,et al. Re-evaluation of the elastic scattering of supersymmetric dark matter , 2000, hep-ph/0001005.
[42] M. Carena,et al. Light stau phenomenology and the Higgs γγ rate , 2012, 1205.5842.
[43] Rashmish K. Mishra,et al. A Classification of Dark Matter Candidates with Primarily Spin-Dependent Interactions with Matter , 2010, 1003.1912.
[44] J. Hewett. Can the decay [ital b][r arrow][ital s][gamma] close the supersymmetric Higgs boson production window , 1993 .
[45] B. Fuks,et al. Gaugino production in proton-proton collisions at a center-of-mass energy of 8 TeV , 2012, 1207.2159.
[46] A. Semenov,et al. micrOMEGAs: Version 1.3 , 2006, Comput. Phys. Commun..
[47] R. Webb,et al. Limits on Spin-Dependent WIMP-Nucleon Cross Section Obtained from the Complete LUX Exposure. , 2017, Physical review letters.
[48] M. Davier,et al. Reevaluation of the hadronic contributions to the muon g−2 and to $\alpha (M^{2}_{Z})$ , 2010, 1010.4180.
[49] J. Hewett. Can b ---> s gamma close the supersymmetric Higgs production window? , 1992, hep-ph/9211256.
[50] Hoang Dai Nghia Nguyen,et al. Search for chargino-neutralino production using recursive jigsaw reconstruction in final states with two or three charged leptons in proton-proton collisions at $\sqrt{s}$=13 TeV with the ATLAS detector , 2018, 1806.02293.
[51] Gilbert Moultaka,et al. SuSpect: A Fortran code for the Supersymmetric and Higgs particle spectrum in the MSSM , 2007, Comput. Phys. Commun..
[52] Konstantin T. Matchev,et al. Precision corrections in the minimal supersymmetric standard model , 1996, hep-ph/9606211.
[53] T. R. Fernandez Perez Tomei,et al. Search for additional neutral MSSM Higgs bosons in the τ τ final state in proton-proton collisions at s=13$$ \sqrt{s}=13 $$ TeV , 2018, Journal of High Energy Physics.
[54] M. Ciuchini,et al. Next-to-Leading QCD Corrections to B → Xsγ: Standard Model and Two-Higgs Doublet Model , 1997, hep-ph/9710335.
[55] T. R. Fernandez Perez Tomei,et al. Search for supersymmetry in events with a τ lepton pair and missing transverse momentum in proton-proton collisions at s=13\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} , 2018, Journal of High Energy Physics.
[56] Goodman,et al. Detectability of certain dark-matter candidates. , 1985, Physical review. D, Particles and fields.
[57] B→Xsγ in supersymmetry: large contributions beyond the leading order , 2000, hep-ph/0009337.
[58] S. Mrenna,et al. Complementarity of the CERN LEP collider, the Fermilab Tevatron, and the CERN LHC in the search for a light MSSM Higgs boson , 1999, hep-ph/9907422.
[59] Javier Pardo Vega,et al. Higgs mass determination in supersymmetry , 2015 .
[60] Hall,et al. Top quark mass in supersymmetric SO(10) unification. , 1993, Physical review. D, Particles and fields.
[61] T. Teubner,et al. Z ) re-evaluated using new precise data , 2011 .
[62] T. Kinoshita,et al. Improved α4 term of the muon anomalous magnetic moment , 2004 .
[63] Lewis C. Tunstall,et al. Light stops, blind spots, and isospin violation in the MSSM , 2015, 1503.03478.
[64] M. Carena. Higgs Boson Phenomenology at the Tevatron Collider , 2008 .
[65] M. Xiao,et al. Dark Matter Results from 54-Ton-Day Exposure of PandaX-II Experiment. , 2017, Physical review letters.
[66] J. Hewett. Can b → sγ Close the Supersymmetric Higgs Production Window ? , 1993 .
[67] C. Wagner,et al. Constraints on supersymmetric dark matter for heavy scalar superpartners , 2017, 1701.02737.
[68] P. G. Verdini,et al. Search for supersymmetric particles in $e^+ e^-$ collisions at $s$ up to 202-GeV and mass limit for the lightest neutralino , 2001 .
[69] S. Heinemeyer,et al. Reconciling EFT and hybrid calculations of the light MSSM Higgs-boson mass , 2017, 1706.00346.
[70] O. Kittel. How light can the lightest neutralino be? , 2007, 1011.3450.
[71] Javier Pardo Vega,et al. SusyHD: Higgs mass Determination in Supersymmetry , 2015, 1504.05200.
[72] Kinoshita,et al. Hadronic contributions to the anomalous magnetic moment of the muon. , 1985, Physical review. D, Particles and fields.
[73] Gabriel Lee,et al. Higgs bosons in heavy supersymmetry with an intermediate m A , 2015, 1508.00576.
[74] K. Freese,et al. Neutralino Dark Matter with Light Staus , 2013, 1309.7351.
[75] S Priya,et al. Dark Matter Search Results from the PICO-2L C3F8 Bubble Chamber. , 2015, Physical review letters.
[76] M. Drees,et al. Neutralino relic density in minimal N=1 supergravity. , 1992, Physical Review D, Particles and fields.
[77] C. Wagner,et al. Blind Spots for neutralino Dark Matter in the MSSM with an intermediate m_A , 2014, 1404.0392.
[78] b ---> s gamma and supersymmetry with large tan Beta , 2000, hep-ph/0010003.
[79] M. P. Casado,et al. Search for additional heavy neutral Higgs and gauge bosons in the ditau final state produced in 36 fb−1 of pp collisions at s=13$$ \sqrt{s}=13 $$ TeV with the ATLAS detector , 2018 .
[80] Shunsuke Adachi,et al. Search for electroweak production of supersymmetric states in scenarios with compressed mass spectra at √s = 13 TeV with the ATLAS detector , 2018 .
[81] H. Baer,et al. Target dark matter detection rates in models with a well-tempered neutralino , 2006, hep-ph/0611387.
[82] E Aprile,et al. First Dark Matter Search Results from the XENON1T Experiment. , 2017, Physical review letters.
[83] S. Mrenna,et al. MSSM Higgs boson phenomenology at the Fermilab tevatron collider. , 1998, hep-ph/9808312.
[84] D. Leith,et al. Measurement of B ( B ! X s (cid:1) ), the B ! X s (cid:1) photon energy spectrum, and the direct CP asymmetry in B ! X s þ d (cid:1) decays , 2012 .
[85] John Ellis,et al. Exploration of elastic scattering rates for supersymmetric dark matter , 2001 .
[86] Michael Spira,et al. PROSPINO: A Program for the production of supersymmetric particles in next-to-leading order QCD , 1996 .
[87] Improved alpha**4 term of the muon anomalous magnetic moment , 2004, hep-ph/0402206.
[88] Felix Yu,et al. Indirect probes of the MSSM after the Higgs discovery , 2012, 1211.1976.
[89] S. Khalil,et al. Closing in on the Wino LSP via trilepton searches at the LHC , 2017, Journal of High Energy Physics.
[90] Matthias Steinhauser,et al. Weak radiative decays of the B meson and bounds on MH±\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$M_{H^\pm }$$\end , 2017, The European Physical Journal C.
[91] Jonathan M. Cornell,et al. Combined collider constraints on neutralinos and charginos , 2018, The European Physical Journal C.
[92] V. M. Ghete,et al. Combined search for electroweak production of charginos and neutralinos in proton-proton collisions at s=13$$ \sqrt{s}=13 $$ TeV , 2018, 1801.03957.
[93] C. Wagner,et al. Precise estimates of the Higgs mass in heavy supersymmetry , 2013, 1312.5743.
[94] J. Hagelin,et al. Spin-zero leptons and the anomalous magnetic moment of the muon , 1982 .
[95] L. A. Granado Cardoso,et al. Measurement of the B_{s}^{0}→μ^{+}μ^{-} Branching Fraction and Effective Lifetime and Search for B^{0}→μ^{+}μ^{-} Decays. , 2017, Physical review letters.
[96] M. Carena,et al. A 125 GeV SM-like Higgs in the MSSM and the γγ rate , 2011, 1112.3336.
[97] F. T. Collaboration,et al. Global fits of the MSSM with GAMBIT , 2018, Proceedings of The 39th International Conference on High Energy Physics — PoS(ICHEP2018).
[98] M. Carena,et al. Vacuum stability and Higgs diphoton decays in the MSSM , 2012, 1211.6136.
[99] K. Griest,et al. Supersymmetric dark matter , 1992 .
[100] F. Boudjema,et al. micrOMEGAs : A program for calculating the relic density in the MSSM , 2002 .
[101] Z. Ligeti,et al. Dark matter models with uniquely spin-dependent detection possibilities , 2010, 1012.5317.
[102] Takeo Moroi. Muon anomalous magnetic dipole moment in the minimal supersymmetric standard model. , 1996 .
[103] C. Rogan,et al. Sparticles in motion: Analyzing compressed SUSY scenarios with a new method of event reconstruction , 2017 .
[104] S Fiorucci,et al. Results from a Search for Dark Matter in the Complete LUX Exposure. , 2016, Physical review letters.
[105] C. Cheung,et al. Prospects and blind spots for neutralino dark matter , 2012, 1211.4873.
[106] B. Fuks,et al. Precision predictions for electroweak superpartner production at hadron colliders with Resummino , 2013, The European Physical Journal C.