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Gordon L. Kane : ウィキペディア英語版
Gordon L. Kane

Gordon Kane is ''Victor Weisskopf Distinguished Professor'' at the University of Michigan and ''MCTP Director Emeritus''. From 2002 until 2011 he was ''Victor Weisskopf Collegiate Professor of Physics'' at the same university. From 2005 until 2001 he also directed the Michigan Center for Theoretical Physics (MCTP), a leading center for the advancement of theoretical physics. In 2012 he received the Lilienfeld Prize from the American Physical Society.
Professor Kane is an internationally recognized scientific leader in theoretical and phenomenological particle physics, and theories for physics beyond the Standard Model. In recent years he has been a leader in string phenomenology. Kane has been with the University of Michigan since 1965.
== Fundamental Research ==

In 1982 Kane co-led the international Snowmass working group study that pointed to the Superconducting Super Collider (SSC) as the next scientific direction for particle physics. The SSC project was finally halted and replaced by the CERN Large Hadron Collider (LHC) at Geneva, which will test for the presence of supersymmetry, the leading candidate model for new physics beyond the Standard Model.
Around the same time Kane and Leveille 〔G. L. Kane, J.P. Leveille,Phys.Lett.B112:227,1982.〕
performed the first calculation of the Feynman rules for gluinos, and of the production of gluinos at colliders, which turns out to be one of the most important ways to discover supersymmetry at the LHC.
Gordon Kane is also well known for his work with Howard Haber, putting together and elucidating
the structure of the Minimal Supersymmetric Standard Model (MSSM) into a complete and calculable context in 1984.
Their seminal article published in 1985 〔Howard E. Haber and Gordon L. Kane Published in Phys.Rept.117:75-263,1985.〕 remains one of the single most important references on supersymmetry and the MSSM. A detailed companion report was published in 2002.〔D.J.H. Chung, L.L. Everett, G.L. Kane, S.F. King, J. D. Lykken, L.Wang, Phys.Rept.407:1-203,2005;hep-ph/0312378〕
Kane made important early contributions to the study of the Higgs Bosons, including an
upper limit on the Higgs Boson mass,〔G.L. Kane, C. F. Kolda, J. D. Wells,
Published in Phys.Rev.Lett.70:2686-2689,1993;
e-Print: hep-ph/9210242〕
implications of electric dipole moments, the muon g-2 experiment, the study of
dark matter and its detection,〔For a complete list of early work, see Publications linked above〕
and to early supergravity 〔G.L. Kane, C. F. Kolda, L. Roszkowski, J. D. Wells,
Phys.Rev.D49:6173-6210,1994; hep-ph/9312272〕 and string theory phenomenology.
With colloborators he pointed out the potential LHC inverse problem and solutions towards
its resolution.〔N. Arkani-Hamed, G. L. Kane, J.Thaler, L. Wang,
Published in JHEP 0608:070,2006,
hep-ph/0512190〕

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