PhilSci Archive

Schrodinger Evolution for the Universe: Reparametrization

Thebault, Karim P Y and Gryb, Sean (2015) Schrodinger Evolution for the Universe: Reparametrization. [Preprint]

[img] PDF
Schrodinger_Evolution_of_the_Universe_arxiv.pdf - Draft Version

Download (1MB)

Abstract

Starting from a generalized Hamilton-Jacobi formalism, we develop a new framework for constructing observables and their evolution in theories invariant under global time reparametrizations. Our proposal relaxes the usual Dirac prescription for the observables of a totally constrained system (`perennials') and allows one to recover the influential partial and complete observables approach in a particular limit. Difficulties such as the non-unitary evolution of the complete observables in terms of certain partial observables are explained as a breakdown of this limit. Identification of our observables (`mutables') relies upon a physical distinction between gauge symmetries that exist at the level of histories and states (`Type 1'), and those that exist at the level of histories and not states (`Type 2'). This distinction resolves a tension in the literature concerning the physical interpretation of the partial observables and allows for a richer class of observables in the quantum theory. There is the potential for the application of our proposal to the quantization of gravity when understood in terms of the Shape Dynamics formalism.


Export/Citation: EndNote | BibTeX | Dublin Core | ASCII/Text Citation (Chicago) | HTML Citation | OpenURL
Social Networking:
Share |

Item Type: Preprint
Creators:
CreatorsEmailORCID
Thebault, Karim P Ykarim.thebault@gmail.com
Gryb, Seans.gryb@hef.ru.nl
Keywords: Time, Symmetry, Quantum Gravity, Problem of Time
Subjects: Specific Sciences > Physics > Quantum Gravity
Specific Sciences > Physics > Quantum Mechanics
Specific Sciences > Physics > Relativity Theory
Specific Sciences > Physics > Symmetries/Invariances
Depositing User: Dr Karim Thebault
Date Deposited: 05 Feb 2015 16:42
Last Modified: 05 Feb 2015 16:42
Item ID: 11299
Subjects: Specific Sciences > Physics > Quantum Gravity
Specific Sciences > Physics > Quantum Mechanics
Specific Sciences > Physics > Relativity Theory
Specific Sciences > Physics > Symmetries/Invariances
Date: 4 February 2015
URI: https://philsci-archive.pitt.edu/id/eprint/11299

Monthly Views for the past 3 years

Monthly Downloads for the past 3 years

Plum Analytics

Actions (login required)

View Item View Item