Interpreting Mathematics in Physics: Charting the Applications of SU(2) in 20th Century Physics
Ronald Anderson, G. C. Joshi
Abstract
The role mathematics plays within physics has been of sustained interest for physicists as well as for philosophers and historians of science. We explore this topic by tracing the role the mathematical structure associated with SU(2) has played in three key episodes in 20th century physics - intrinsic spin, isospin, and gauge theory and electro-weak unification. We also briefly consider its role in loop quantum gravity. Each episode has led to new physical notions of a space other than the traditional ones of space and spacetime, and each has had associated with it a complex and in places, contested history. The episodes also reveal ways mathematical structures provide resources for new physical theorizing and we propose our study as a contribution to a need Roger Penrose has identified to develop a "profoundly sensitive aesthetic" sense for locating physically relevant mathematics.
Create a lesson
Related papers
Foreknowledge and Free Will Revisited
Eliyahu Zvi Engelberg
The Bomb, the Hubris, and the Spectre
Alberto Girlando
Holography as an Information Principle in Quantum Gravity
Sebastian De Haro, Enrico Cinti, Aude Corbeel
Dark Matters of Principle: Principles in the Dark Matter Paradigm
Patrick Duerr, James Read
Does the Actuality of Life Favor Many Actual Histories?
Jonathan Baxter
Minkowski's Geometric Explanation of Lorentz Contraction
Tilman Sauer