Book contents
- Frontmatter
- Contents
- Contributors
- Preface
- Acknowledgments
- Introduction
- I Beyond the Hilbert Space Formalism: Category Theory
- 1 A Prehistory of n-Categorical Physics
- 2 A Universe of Processes and Some of Its Guises
- 3 Topos Methods in the Foundations of Physics
- 4 The Physical Interpretation of Daseinisation
- 5 Classical and Quantum Observables
- 6 Bohrification
- II Beyond the Hilbert Space Formalism: Operator Algebras
- III Behind the Hilbert Space Formalism
- Index
4 - The Physical Interpretation of Daseinisation
from I - Beyond the Hilbert Space Formalism: Category Theory
Published online by Cambridge University Press: 01 June 2011
- Frontmatter
- Contents
- Contributors
- Preface
- Acknowledgments
- Introduction
- I Beyond the Hilbert Space Formalism: Category Theory
- 1 A Prehistory of n-Categorical Physics
- 2 A Universe of Processes and Some of Its Guises
- 3 Topos Methods in the Foundations of Physics
- 4 The Physical Interpretation of Daseinisation
- 5 Classical and Quantum Observables
- 6 Bohrification
- II Beyond the Hilbert Space Formalism: Operator Algebras
- III Behind the Hilbert Space Formalism
- Index
Summary
Introduction
This chapter provides a conceptual discussion and physical interpretation of some of the quite abstract constructions in the topos approach to physics. In particular, the daseinisation process for projection operators and for self-adjoint operators is motivated and explained from a physical point of view. Daseinisation provides the bridge between the standard Hilbert space formalism of quantum theory and the new topos-based approach to quantum theory. As an illustration, I show all constructions explicitly for a three-dimensional Hilbert space and the spin-z operator of a spin-1 particle. Throughout, I refer to joint work with Chris Isham, and this chapter is intended to serve as a companion to the one he contributed to this volume.
The Topos Approach
The topos approach to quantum theory was initiated by Isham [21] and Butterfield and Isham [19, 22–24]. It was developed and broadened into an approach to the formulation of physical theories in general by Isham and by this author [12–15]. The long article [16] gives a more or less exhaustive and coherent overview of the approach. More recent developments are the description of arbitrary states by probability measures [9] and further developments [10] concerning the new form of quantum logic that constitutes a central part of the topos approach. For background, motivation, and the main ideas, see also Isham's Chapter 3 in this volume.
- Type
- Chapter
- Information
- Deep BeautyUnderstanding the Quantum World through Mathematical Innovation, pp. 207 - 238Publisher: Cambridge University PressPrint publication year: 2011
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