A new algebraic structure in the standard model of particle physics

Author:

Boyle Latham,Farnsworth Shane

Abstract

Abstract We introduce a new formulation of the real-spectral-triple formalism in non-commutative geometry (NCG): we explain its mathematical advantages and its success in capturing the structure of the standard model of particle physics. The idea, in brief, is to represent A (the algebra of differential forms on some possibly-noncommutative space) on H (the Hilbert space of spinors on that space); and to reinterpret this representation as a simple super-algebra B = AH with even part A and odd part H. B is the fundamental object in our approach: we show that (nearly) all of the basic axioms and assumptions of the traditional real-spectral-triple formalism of NCG are elegantly recovered from the simple requirement that B should be a differential graded ∗-algebra (or “∗-DGA”). Moreover, this requirement also yields other, new, geometrical constraints. When we apply our formalism to the NCG traditionally used to describe the standard model of particle physics, we find that these new constraints are physically meaningful and phenomenologically correct. In particular, these new constraints provide a novel interpretation of electroweak symmetry breaking that is geometric rather than dynamical. This formalism is more restrictive than effective field theory, and so explains more about the observed structure of the standard model, and offers more guidance about physics beyond the standard model.

Publisher

Springer Science and Business Media LLC

Subject

Nuclear and High Energy Physics

Cited by 7 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Noncommutative geometry, the Lorentzian standard model, and its B−L extension;Physical Review D;2021-02-03

2. The geometry of physical observables;Journal of Mathematical Physics;2020-10-01

3. The standard model, the Pati–Salam model, and ‘Jordan geometry’;New Journal of Physics;2020-07-01

4. Spectral Noncommutative Geometry Standard Model and all that;International Journal of Modern Physics A;2019-07-10

5. A survey of spectral models of gravity coupled to matter;Advances in Noncommutative Geometry;2019

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