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A Photonic System for Generating Unconditional Polarization-Entangled Photons Based on Multiple Quantum Interference
Published on: September 5, 2019
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Bell correlations outside physics
C Gallus1, E M Pothos2, P Blasiak3,4
1Technische Hochschule Mittelhessen, 35390, Gießen, Germany. christoph.gallus@w.thm.de.
Scientific Reports
|March 17, 2023
Summary
This study extends John Bell's framework beyond physics, showing how to analyze correlations by separating common causes from noise. This approach offers a new measure of association and streamlined tests for models in any scientific field, including finance.
Area of Science:
- Interdisciplinary statistical analysis
- Quantum mechanics and finance
Background:
- Correlations are fundamental in science, with John Bell's framework crucial for analyzing quantum systems.
- Bell's framework, used to demonstrate non-classical quantum behavior, has broad potential applications beyond physics.
Purpose of the Study:
- To demonstrate a novel Bell-inspired approach for analyzing correlations by decomposing them into causal and noise components.
- To introduce a new measure of association and Bell-type tests applicable across disciplines.
- To highlight the general applicability of Bell's framework and statistical models in analyzing associations.
Main Methods:
- Applied a Bell-type framework to financial data (security price changes).
- Decomposed correlations into a component attributed to common causes and a component attributed to noise.
- Developed streamlined Bell-type tests for established association models like Factor Models and the bivariate Gaussian model.
Main Results:
- Introduced a new, causality-informed measure of association.
- Demonstrated the efficacy of Bell-type tests for evaluating widely used association models.
- Showcased the applicability of the proposed framework and models to financial data and general statistical analysis.
Conclusions:
- Bell's framework and associated statistical models offer general techniques for analyzing associations, transcending specific scientific domains.
- The approach provides a method to distinguish between correlations driven by genuine causes and those arising from noise.
- This work facilitates a deeper understanding of association structures and their analysis in diverse fields.
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