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Noncommutative Geometry and Structure of Space-Time

Record type:

paper
Creator:
Cha
Host:avatar
I give a summary review of the research program using noncommutative geometry as a framework to determine the structure of space-time. Classification of finite noncommutative spaces under few assumptions reveals why nature chose the Standard Model and the reasons behind the particular form of gauge fields, Higgs fields and fermions as well as the origin of symmetry breaking. It also points that at high energies the Standard Model is a truncation of Pati-Salam unified model of leptons and quarks. The same conclusions are arrived at uniquely without making any assumptions except for an axiom which is a higher form of Heisenberg commutation relations quantizing the volume of space-time. We establish the existence of two kinds of quanta of geometry in the form of unit spheres of Planck length. We provide answers to many of the questions which are not answered by other approaches, however, more research is needed to answer the remaining challenging questions. 15 pages, Plenary Talk at 9th Pan African Congress of Mathematicians, PACOM 2017, Morocco, to appear in Special Issue of Africa Matematica, Editor J. Banasiak

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arxiv.org

Tags

High Energy Physics - Theory