The Observer Effect

Foundations of Science 18 (2):213-243 (2013)
  Copy   BIBTEX

Abstract

Founding our analysis on the Geneva-Brussels approach to the foundations of physics, we provide a clarification and classification of the key concept of observation. An entity can be observed with or without a scope. In the second case, the observation is a purely non-invasive discovery process; in the first case, it is a purely invasive process, which can involve either creation or destruction aspects. An entity can also be observed with or without a full control over the observational process. In the latter case, the observation can be described by a symmetry breaking mechanism, through which a specific deterministic observational process is selected among a number of potential ones, as explained in Aerts’ hidden measurement approach. This is what is called a product test, or product observation, whose consequences are that outcomes can only be predicted in probabilistic terms, as it is the case in typical quantum measurements. We also show that observations can be about intrinsic (stable) properties of the observed entity, or about relational (ephemeral) properties between the observer and observed entities; also, they can be about intermediate properties, neither purely classical, nor purely quantum. Our analysis allows us to propose a general conceptual characterization of quantum measurements, as observational processes involving three aspects: (1) product observations, (2) pure creation aspects and (3) ephemeral relational properties. We also discuss the important concept of non-spatiality and emphasize some of the differences and similarities between quantum and classical/relativistic observations

Other Versions

No versions found

Links

PhilArchive

External links

Setup an account with your affiliations in order to access resources via your University's proxy server

Through your library

Analytics

Added to PP
2012-07-13

Downloads
112 (#432,236)

6 months
23 (#436,577)

Historical graph of downloads
How can I increase my downloads?

Author's Profile

References found in this work

Quantum Mechanics.Valia Allori - forthcoming - In Flavia Padovani & Adam Tamas Tuboly, The Routledge Handbook of the History and Philosophy of Science. Routledge.
The Problem of Hidden Variables in Quantum Mechanics.Simon Kochen & Ernst Specker - 1967 - Journal of Mathematics and Mechanics 17 (1):59--87.
The Physical Principles of the Quantum Theory: Transl. Into Engl. By Carl Eckart and Frank C. Hoyt.Werner Heisenberg - 1930 - Chicago: Ill., The University of Chicago Press. Edited by Carl Eckart & Frank Clark Hoyt.
La Science et l'Hypothèse.Henri Poincaré - 1902 - Revue de Métaphysique et de Morale 11 (1):1-1.

View all 17 references / Add more references