Properties of QBist State Spaces

Foundations of Physics 41 (3):564-579 (2011)
  Copy   BIBTEX

Abstract

Every quantum state can be represented as a probability distribution over the outcomes of an informationally complete measurement. But not all probability distributions correspond to quantum states. Quantum state space may thus be thought of as a restricted subset of all potentially available probabilities. A recent publication (Fuchs and Schack, arXiv:0906.2187v1, 2009) advocates such a representation using symmetric informationally complete (SIC) measurements. Building upon this work we study how this subset—quantum-state space—might be characterized. Our leading characteristic is that the inner products of the probabilities are bounded, a simple condition with nontrivial consequences. To get quantum-state space something more detailed about the extreme points is needed. No definitive characterization is reached, but we see several new interesting features over those in Fuchs and Schack (arXiv:0906.2187v1, 2009), and all in conformity with quantum theory

Similar books and articles

Complete Measurements of Quantum Observables.Juha-Pekka Pellonpää - 2014 - Foundations of Physics 44 (1):71-90.
Quantum Measurements and Finite Geometry.W. K. Wootters - 2006 - Foundations of Physics 36 (1):112-126.
Neumark's theorem and quantum inseparability.Asher Peres - 1990 - Foundations of Physics 20 (12):1441-1453.
Random quantum states.William K. Wootters - 1990 - Foundations of Physics 20 (11):1365-1378.
Measurement of quantum states and the Wigner function.Antoine Royer - 1989 - Foundations of Physics 19 (1):3-32.
Negative and complex probability in quantum information.Vasil Penchev - 2012 - Philosophical Alternatives 21 (1):63-77.
Objective Probability and Quantum Fuzziness.U. Mohrhoff - 2009 - Foundations of Physics 39 (2):137-155.

Analytics

Added to PP
2013-11-22

Downloads
285 (#67,584)

6 months
90 (#44,415)

Historical graph of downloads
How can I increase my downloads?

Author Profiles

David Marcus Appleby
University of Sydney
Christopher A. Fuchs
University of Massachusetts, Boston

References found in this work

Add more references