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New Wave-Particle Duality Approach

1st picture of light duality

Abstract

This is the first photograph of light as both a wave and a particle - Fig 1   We know that light behaves that way based on the outcome of the double slit experiment   Based on where and when the observation is made the nature of the particle changes - Fig 2 - see Double Slit Experiment for reference.   he simple fact of observing the particle makes the wave function collapse into one possibility and the outcome changes for every observation.   In order to make an observation, whether with an apparatus or with the naked eye, light has to go through layers (retinas for example). The theory is that light is a wave but will be represented as a particle based on which layer it is captured.   When the wave crosses the layer, it gives up coordinates that are seen as a particle on the aparatus. Very much like taking a snapshot of a scene in a movie - Fig 3   If you take the first picture and apply layers to it, you can see clearly that  by compacting all the layers together it forms the entire spectrum of light - Fig 4

Content

The reason why the naked eye can’t see UV or infrared is because we don’t have the adequate layers to see the light.   All the colors exist at the same time but the reason why red is red and blue is blue is because of the layers they go through in the apparatus that is observing it.   You will find below the layers without the particle at the bottom and the layers without the wave but with the particle curved like a wave - See for yourself - Fig 5 & Fig 6     After doing quite a  lot of research, I couldn't find anything like this.   I would like to know if this has been thought before, if not published.   In the case of this is a first I would like to work with someone on whether testing it or proving it mathematically.

REFERENCES

Original work



Double Slit Experiment
When the wave crosses the layer
it gives up coordinates that are seen as a particle on the aparatus.
Superposition of layers
Superposition of layers without the particle
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