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We revisit four generations within the context of supersymmetry.
Y. Kikukawa, M. Kohda, and J. Yasuda, “The strongly coupled fourth family and a first-order electroweak phase transition (I) quark sector,” 0901.1962
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1981
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M. E. Machacek and M. T. Vaughn, “Two Loop Renormalization Group Equations in a General Quantum Field Theory. 1. Wave Function Renormalization,” Nucl. Phys
1983
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M. E. Machacek and M. T. Vaughn, “Two Loop Renormalization Group Equations in a General Quantum Field Theory. 2. Yukawa Couplings,” Nucl. Phys
1984
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L. E. Ibanez and C. Lopez, “N=1 Supergravity, the Weak Scale and the Low-Energy Particle Spectrum,” Nucl. Phys
1984
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H. Goldberg, “The fourth generation and N=1 Supergravity,” Phys. Lett
1985
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K. Enqvist, D. V. Nanopoulos, and F. Zwirner, “The Fourth Generation in Supergravity,” Phys. Lett
1985
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J. E. Bjorkman and D. R. T. Jones, “The Unification Mass, sin 2 θ w \sin^{2}\theta_{w} and m b / m τ m_{b}/m_{\tau} in Nonminimal Supersymmetric SU(5),” Nucl. Phys
1985
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J. Bagger, S. Dimopoulos, and E. Masso, “Renormalization Group Constraints in Supersymmetric Theories,” Phys. Rev. Lett
1985
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B. Holdom, “Heavy Quarks and Electroweak Symmetry Breaking,” Phys. Rev. Lett
1986
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N. K. Falck, “Renormalization Group Equations for Softly Broken Supersymmetry: The Most General Case,” Z. Phys
1986
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M. Cvetic and C. R. Preitschopf, “Heavy Families and N=1 Supergravity Within the Standard Model,” Nucl. Phys
1986
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R. L. Arnowitt and P. Nath, “Fourth Generation and Nucleon Decay in Supersymmetric Theories,” Phys. Rev
1987
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M. Drees, K. Enqvist, and D. V. Nanopoulos, “No Future for the Fourth Generation?,” Nucl. Phys
1987
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H. Stremnitzer and J. C. Pati, “New Crucial Tests of Compositeness of the Third and a Possible Fourth Family in e+ e- Colliders,” Phys. Lett
1987
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M. Drees, K. Enqvist, and D. V. Nanopoulos, “The Fourth Generation in Superstring Models,” Phys. Lett
1987
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M. Tanimoto, Y. Suetake, and K. Senba, “Fritzsch Mass Matrix with the Fourth Generation and the Renormalization Group Equations,” Phys. Rev
1987
Earlier work this paper cites.
A. L. Kagan, “Radiative Quark Mass and Mixing Hierarchies from Supersymmetric Models with a Fourth Mirror Family,” Phys. Rev
1989
Cited alongside, same era.
S. F. King, “Is Electroweak Symmetry Broken by a Fourth Family of Quarks?,” Phys. Lett
1990
Cited alongside, same era.
C. T. Hill and E. A. Paschos, “A Naturally Heavy Fourth Generation Neutrino,” Phys. Lett
1990
Cited alongside, same era.
C. T. Hill, M. A. Luty, and E. A. Paschos, “Electroweak symmetry breaking by fourth generation condensates and the neutrino spectrum,” Phys. Rev
1991
Cited alongside, same era.
B. Ananthanarayan, G. Lazarides, and Q. Shafi, “Top mass prediction from supersymmetric guts,” Phys. Rev
1991
Cited alongside, same era.
B. C. Allanach, “SOFTSUSY: A C++ program for calculating supersymmetric spectra,” Comput. Phys. Commun
2002
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J. E. Dubicki and C. D. Froggatt, “Supersymmetric grand unification with a fourth generation?,” Phys. Lett
2003
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M. Drees, R. Godbole, and P. Roy, “Theory and phenomenology of sparticles: An account of four-dimensional N=1 supersymmetry in high energy physics,”. Hackensack, USA: World Scientific (2004) 555 p
2004
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J. Alwall et al
2007
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G. D. Kribs, T. Plehn, M. Spannowsky, and T. M. P. Tait, “Four generations and Higgs physics,” Phys. Rev
2007
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1992
Cited alongside, same era.
H. Fritzsch, “Light neutrinos, nonuniversality of the leptonic weak interaction and a fourth massive generation,” Phys. Lett
1992
Cited alongside, same era.
J. F. Gunion, D. W. McKay, and H. Pois, “Gauge coupling unification and the minimal SUSY model: a Fourth generation below the top?,” Phys. Lett
1994
Cited alongside, same era.
D. J. Castano, E. J. Piard, and P. Ramond, “Renormalization group study of the Standard Model and its extensions. 2. The Minimal supersymmetric Standard Model,” Phys. Rev
1994
Cited alongside, same era.
H. B. Nielsen, A. V. Novikov, V. A. Novikov, and M. I. Vysotsky, “Higgs potential bounds on extra quark - lepton generations,” Phys. Lett
1996
Cited alongside, same era.
J. F. Gunion, D. W. McKay, and H. Pois, “A Minimal four family supergravity model,” Phys. Rev
1996
Cited alongside, same era.
R. Rattazzi and U. Sarid, “The Unified minimal supersymmetric model with large Yukawa couplings,” Phys. Rev
1996
Cited alongside, same era.
2007
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P. Q. Hung and M. Sher, “Experimental constraints on fourth generation quark masses,” Phys. Rev
2008
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R. Fok and G. D. Kribs, “Four Generations, the Electroweak Phase Transition, and Supersymmetry,” Phys. Rev
2008
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Particle Data Group
2008
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M. Bobrowski, A. Lenz, J. Riedl, and J. Rohrwild, “How much space is left for a new family of fermions?,” Phys. Rev
2009
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M. S. Chanowitz, “Bounding CKM Mixing with a Fourth Family,” Phys. Rev
2009
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W.-S. Hou, “CP Violation and Baryogenesis from New Heavy Quarks,” Chin. J. Phys
2009
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E. De Pree, G. Marshall, and M. Sher, “The Fourth Generation t-prime in Extensions of the Standard Model,” Phys. Rev
2009
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K. S. Babu, S. Nandi, and Z. Tavartkiladze, “New Mechanism for Neutrino Mass Generation and Triply Charged Higgs Bosons at the LHC,” Phys. Rev
2009
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S. Litsey and M. Sher, “Higgs Masses in the Four Generation MSSM,” Phys. Rev
2009
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P. Meade, N. Seiberg, and D. Shih, “General Gauge Mediation,” Prog. Theor. Phys. Suppl
2009
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Z. Murdock, S. Nandi, and Z. Tavartkiladze, “Perturbativity and a Fourth Generation in the MSSM,” Phys. Lett
2064
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