Unification and new particles at the LHC
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[1] Scoap. Search for squarks and gluinos in final states with jets and missing transverse momentum at s =13 TeV with the ATLAS detector , 2016 .
[2] Lino Ferreira Lopes,et al. Search for new phenomena in dijet mass and angular distributions from pp collisions at √s= 13 TeV with the ATLAS detector , 2016 .
[3] Michael Spannowsky,et al. Probing MeV to 90 GeV axion-like particles with LEP and LHC , 2015, 1509.00476.
[4] Atlas Publications. Measurements of the Higgs boson production and decay rates and coupling strengths using pp collision data at √ s = 7 and 8 TeV in the ATLAS experiment , 2015 .
[5] F. Kahlhoefer,et al. ALPtraum: ALP production in proton beam dump experiments , 2015, 1512.03069.
[6] Z. Ligeti,et al. New vector-like fermions and flavor physics , 2015, 1506.03484.
[7] P. D. Luckey,et al. Search for pair-produced resonances decaying to jet pairs in proton–proton collisions at √s = 8 TeV , 2015 .
[8] J. Kuti,et al. The running coupling of 8 flavors and 3 colors , 2015, 1503.01132.
[9] C. Collaboration,et al. Precise determination of the mass of the Higgs boson and tests of compatibility of its couplings with the standard model predictions using proton collisions at 7 and 8 TeV , 2014, 1412.8662.
[10] Scoap. Search for excited quarks in the γ+jet final state in proton–proton collisions at s=8 TeV , 2014 .
[11] E. Bagnaschi,et al. Higgs mass and unnatural supersymmetry , 2014, 1407.4081.
[12] Lian-tao Wang,et al. Neutralino dark matter at 14 TeV and 100 TeV , 2014, 1404.0682.
[13] J. T. Childers,et al. Search for new phenomena in photon + jet events collected in proton-proton collisions at √s = 8 TeV with the ATLAS detector , 2014 .
[14] J. A. Aguilar-Saavedra,et al. Handbook of vectorlike quarks: Mixing and single production , 2013, 1306.0572.
[15] P. Vogel,et al. Lepton Flavor and Number Conservation, and Physics Beyond the Standard Model , 2013, 1303.4097.
[16] R. Nardo,et al. New constraint on the existence of the μ+ → e+ γ decay. , 2013, Physical review letters.
[17] S. Dimopoulos,et al. Mini-Split , 2012, Journal of High Energy Physics.
[18] K. Tuominen,et al. Determining the conformal window: SU(2) gauge theory with Nf = 4, 6 and 10 fermion flavours , 2011, 1111.4104.
[19] S. P. Martin. Quirks in supersymmetry with gauge coupling unification , 2010, 1012.2072.
[20] Y. Nir,et al. Flavor Physics Constraints for Physics Beyond the Standard Model , 2010, 1002.0900.
[21] R. Sundrum,et al. Vectorlike confinement at the LHC , 2009, 0906.0577.
[22] Francesco Sannino. Conformal windows of Sp(2N) and SO(N) gauge theories , 2009, 0902.3494.
[23] Jeff L. Jones. Gauge Coupling Unification in MSSM + 5 Flavors , 2008, 0812.2106.
[24] Francesco Sannino,et al. Conformal Windows of SU(N) Gauge Theories, Higher Dimensional Representations and The Size of The Unparticle World , 2007, 0707.3166.
[25] Antonio Delgado,et al. The Well-Tempered Neutralino , 2006, hep-ph/0601041.
[26] S. Dimopoulos,et al. Aspects of Split Supersymmetry , 2004, hep-ph/0409232.
[27] Savas Dimopoulos,et al. Supersymmetric unification without low energy supersymmetry and signatures for fine-tuning at the LHC , 2004, hep-th/0405159.
[28] G. Giudice,et al. Erratum to: "Split supersymmetry" [Nucl. Phys. B 699 (2004) 65] , 2004, hep-ph/0406088.
[29] J. Wells. Implications of Supersymmetry Breaking with a Little Hierarchy between Gauginos and Scalars , 2003, hep-ph/0306127.
[30] R. Muñoz-Tapia,et al. Limits on the mass of the lightest Higgs in supersymmetric models , 1998, hep-ph/9801437.
[31] K. Dienes. String theory and the path to unification: A Review of recent developments , 1996, hep-th/9602045.
[32] R. Arnowitt,et al. Supersymmetric Dark Matter , 1995, hep-ph/9610460.
[33] K. Intriligator,et al. Exact superpotentials, quantum vacua and duality in supersymmetric SP(Nc) gauge theories , 1995, hep-th/9505006.
[34] N. Seiberg. Electric-magnetic duality in supersymmetric non-Abelian gauge theories , 1994, hep-th/9411149.
[35] Nelson,et al. Cosmological implications of dynamical supersymmetry breaking. , 1993, Physical review. D, Particles and fields.
[36] J. Casas,et al. Model-independent properties and cosmological implications of the dilaton and moduli sectors of 4D strings , 1993, hep-ph/9308325.
[37] H. Georgi. Generalized dimensional analysis , 1992, hep-ph/9207278.
[38] Savas Dimopoulos,et al. Softly Broken Supersymmetry and SU(5) , 1981 .
[39] M. Peskin. The Alignment of the Vacuum in Theories of Technicolor , 1980 .
[40] Searches for Long-lived Charged Particles in Proton-Proton Collisions at √ s = 13 TeV The CMS Collaboration , 2022 .