Supersymmetry and Integrable Models : Proceedings of a Workshop Held at Chicago
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Henrik Aratyn , Tom D. Imbo, Wai-Yee Keung, Uday Sukhatme | |||
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Lecture Notes in Physics 502 | |||
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Springer Berlin Heidelberg | |||
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1998 | |||
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English | |||
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380 pages | |||
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2.70 MB | |||
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DJVU | |||
[tab] [content title="Description"]This book combines supersymmetry modelling in quantum mechanics and integrable models in a unique way. It addresses researchers as well as graduate students. Along with articles that present new technical results, the reader will also find pedagogically written reviews. Recent applications of supersymmetric integrable models are also given. [/content] [content title="Content"] [/content] [content title="About the author"]Henrik Aratyn, PhD Associate Dean, College of Liberal Arts and Sciences; and Professor Physics. Wai-Yee Keung has made influential contributions to a broad scope of particle physics phenomenology for 30 years. He is among the most technically proficient of physicists that work at the interface of theory and experiment. He introduced the standard parameterization of quark mixing (1984) in the Particle Data Book that is now universally used in B-physics. He calculated supersymmetry contributions to the electric dipole moments of the neutron and electron (1999) and showed that the experimental limits place severe constraints on CP-violating phases. He studied the Higgs decay to a real and a virtual W-boson (1984), which proved to be an important Higgs discovery mode in LHC experiments. He showed that the Majorana nature of a heavy neutral fermion (heavy RH neutrino or gluino) would give an unmistakable signature of same-sign lepton pairs at colliders (1983). He made a pioneering calculation of the direct signatures at colliders of low scale gravity(1999). He constructed a model with a W'-boson as an interpretation of the Tevatron top asymmetry(2009). He was a discoverer of the unparticle propagator effect (2007). He made numerous significant contributions to heavy quarkonium theory. He was the first to extract the gluon momentum distribution (1980), using photoproduction and hadroproduction data. He is now contributing importantly to Dark Matter and Higgs phenomenology. [/content] [/tab]
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