Logo: Proper Interval Locality
Defintion of proper interval locality
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If events A and B meet this condition then the paper defines them as being properly local.
In Newtonian space and time things can only be local if both the spatial and temporal gulfs separating them have zero magnitude, things literally have to bump into each other to interact. In Minkowski space-time the presence of the minus sign in the metric creates a new form of locality that this paper calls proper interval locality. Where objects are separated by a zero interval gap they are properly local even if they appear to be separated by billions of light years of space. This paper argues that proper interval locality is at the heart of electrodynamics and thus controls virtually everything that happens around us.
The main thrust of proper interval locality theory is that: -
Quantum entities exchange energy via zero interval paths.
We in effect have removed both wave-like and particle-like characteristics from the photon. It now becomes a quantitised package of energy that can jump directly the zero interval gaps between quantum systems. The electromagnetic energy exists either in the emitting system or the absorber system but has no independent existence in space-time between the two.
The carrier particle appears to be a redundant feature of electromagnetism in space-time whose metric is characterised by the inclusion of the minus sign.
The wave-function of light?
The position in space where interactions are likely happen is controlled by a wave-function. If proper interval locality is correct and the photon does not have an independent existence outside the interacting quantum systems then where to does the wave-function come from? The correct theory for the generation of the wave-function is critical to developing a self-consistent theory of electromagnetism in a Minkowski Space-time environment. Shortly we shall develop a theory of how the electro-dynamic wave-function is created but firstly we shall provide some pictorial representations of proper interval locality.
Index
Other pages:
The Principle of Proper Interval Locality
Quantum electrodynamics, Intrepretation of Quantum Mechanics,Minkowski space-time Schwarzschild. EPR Experiment. Zero proper interval arc length mediation of electromagnetism in Riemannian manifolds characterised by the Einstein tensor
Overview
Overview of proper interval locality
Dorling Kindersley Books
Index
Proper Interval Locality, Index
Introduction
Minkowski Electrodynamics in Space-time
Defintion of proper interval locality
Locality and Non-Locality, grid transformation
Visualising Proper Interval Locality
Interval transformation in the space-time diagram.
Development of the Wave-function of light
Planck's constant,and proper interval Locality, wave-function of light., transactional interpretation Cramer, emitter absorber theory Wheeler Feynmann
The Single Hole and Relativistic Uncertainty
Fresnel Diffraction and interference
Young's Double Slit Experiment and single Photon Interference
Young's double slit experiment.
A Note on Connectivity in Space-Time
Connectivity in Space-Time
A Note on the Polarisation of Light
Polarisation of light in Space-Time
Aspect's Experiment
Aspect's Experiment, How Photons become entangled, correlation of spatially separated events. Bell's inequality
References
On the Electrodynamics of Moving Bodies
Conclusion
Reconcilliation of quantum mechanics and relativity
Questions and Answers
quantum mechanics and special relativity validation
Compton Effect
Compton Effect, wave particle duality.
Questions and Answers Continued
Everett Multiverse single versus multi universe.
Modern Physics, the view from the duckpond
Modern Physics
Development notes
development of theory
Draft
Attachment 2
Propbability distribution for an interaction.
Books about Relativity and Quantum Mechanics
Books about Relativity and Quantum Mechanics
DVD's on Relativity and Quantum Mechanics
DVD's on Relativity and Quantum Mechanics
Bell Local Theory
Bell Local Theory Where Bell's Inequality is Violated (In response to challenge by Travis Norsen
Partners
Links to Sponsers
Minkowski to Euclidean Projection Mechanics
Intrepretaion of quantum mechanics, relationship between how we measure events and how we graphically represent them.
unified variational theory
principles of least time and least action (stationary) explored as the characteristics of a single constiturnt of nature
Book shop
books on physics relativity quant mechanics
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General Theory
Including general relativity
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