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Why Uncertainty Doesn't Work And Why Fields Do
Explaining the meaning of a field and debunking Uncertainty Theory
Published by tedjay
10-16-2007
Arrow Why Uncertainty Doesn't Work And Why Fields Do

ARTICLE 7 OF 9


Note: For the benefit of those who might not have read the previous articles, the foundational basis of Zeron Theory is repeated at the beginning of each article (in italics).


WHY UNCERTAINTY DOESN'T WORK AND WHY FIELDS DO



This article reveals the shaky foundations of the Uncertainty Principle and provides a realistic explanation for a ''field''. In this very short article I need to start with some models that were more rigorously derived in the original development of the theory. You can get more information by following the link at the end of this article.

The Basic Foundational Model

·There is an Aether. It consists of an all-pervasive 'atmosphere' of prime particles called Zerons
·All Zerons are identical, and are totally elastic, frictionless, have inertial mass but zero gravitational mass, and come in two varieties, fast and slow.
·Fast Zerons travel at a velocity of root 2 x c and inter-collide to form a type of Aether which we have named the Cosma. The Cosma is a resonant Perfect Fluid.
·Matter consists of resonating agglomerations of Slow Zerons held together by pressure from the Cosma.
·Matter resonates at a frequency different to that of the Cosma.
·The Zeron constitutes an unimaginably small class of matter and can be shown to have a mass of 7.39 x10p-46 gms compared to an electron mass of 9.11 x 10p-28 gms. There are therefore 1, 33 x 10p18 Zerons in an electron!


The Basic Foundational Atom

Consider the hydrogen atom. The Proton nucleus consists of an agglomeration of slow resonating Zerons within the resonant Cosma. Their interaction produces a denser region in the Cosma in the form of a spherical standing wave shell of Zerons. This is the electron shell.
Light emanates from the atom after it is first excited so that the electron shell jumps to the next permissible radius and then collapses to emit an outwardly expanding sphere of light manifested as a series of Zeron impact waves travelling through the Cosma at a velocity c in every direction. If we now accelerate the atom through the Aether the Zeron pressure at the front of the nucleus becomes greater than at the back. This distorts both the nucleus and the electron shell. As soon as the acceleration stops a steady state returns and the atom retains its distorted shape.

We saw in Article 2 that the first nail in the Uncertainty coffin had been driven (electron nail) and the second nail was provided in Article 5 (photon nail). However the ghost of Uncertainty will come back to haunt us unless we deal effectively with the key experiment that has, for so long, thrown physics into confusion. It was performed by Alain Aspect in 1965.

But before we get there we need to refine Zeron theory a bit more by having a good look at ''fields''. One apt definition of a field is ''the recipient of a set of equations''! Nobody is saying exactly what a field is. To find out, let's start by an examination of “empty” space. If we could find a volume of empty space away from any gravitational influence and not touched by light or any form of radiation, we would find Zerons in constant movement, rebounding off each other in a perfectly random but resonant manner. Though we can get closer to these conditions out in space than on earth, a pattern of perfectly random Zeron impact is certainly nowhere to be found in our universe. As soon a there is an impingement of gravity, a ray of light a cosmic ray or a magnetic influence into our space, a pattern is imposed on the randomness of the Cosma’s resonance. This non-random pattern of Zeron momentum is what we recognise as a field. This leads to a definition:

A field is any non-random pattern of Zeron momentum transfer.

While the different types of field are determined by different patterns they all have at their root this Zeron impact signature. We are familiar with electrostatic fields, electromagnetic fields, and gravitational fields. These are all manifestations of a pattern within the otherwise random Cosma. One new type of field needs to be introduced. We have called this the Quantum Field. We saw that the presence of an atomic nucleus sets up a resonant electron shell. Similarly the presence of any body having mass sets up a disturbance in the “randomness” of the Cosma. This effect is present both at micro and macro scale. Like gravity, the quantum field reduces in strength as the square of the distance from the object. However in other respects the quantum field is quite different. The basis for the quantum field is the same as that for the electron shell. We know that when an atom is excited by an input of energy the electron may jump to a larger “allowable” orbit. For the hydrogen atom the n=1, n=2, n=3, n=4, and n=5 orbits are distanced from the nucleus as the nth power of 2 i.e. in the proportions 1,4,8,16,etc. Zeron theory proposes that in addition to these major high-energy Zeron shells other “ghost” shells are in place, having progressively larger radii. Normally these shells have insufficient energy to permit the formation of an electron. However they must exist. This follows from the fact that we are, with the Cosma, dealing with a loss-free system. To assume that the resonant shells simply end at the last electron shell would be completely untenable.
If the radii of these shells increase as the nth power of 2 it will be seen that the radius soon leaves the realm of the atomic scale and will extend appreciable distances into the space surrounding
the nucleus. For a massive body these quantum shells combine to form an enlarged “ghost” image of the object reaching far beyond the confines that we can see or detect by any but the most sensitive apparatus. The quantum field of a massive body forms a “mantle” from the summated resonant shells. Being formed in a loss-less environment, this mantle theoretically extends to infinity. However practically, the mantle can be considered to extend to that point where it is no longer capable of producing quantum effects. This system of Zeron shells constitutes the quantum field. The quantum field is of great importance in considerations of “indeterminacy”. It will be the main tool for the return of the universe to an objectively real status.

Aspect's experiment depended on a powerful mathematical theorem produced by John Bell. Bell investigated the correlations that could exist between the results of measurements carried out simultaneously on two separated particles. He was able to establish a strict theoretical limit on the possible level of correlation for the simultaneous measurement of the properties of the two particles. Thus if an experiment could be devised to perform measurements in two isolated systems and if Bell's limit was exceeded, then Bohr's view of a Quantum universe would prevail in the sense that there would be some sort of co-operation or conspiracy between the systems. If Bell's limit was not exceeded then the "objectively real" universe of Einstein would prevail.

Aspect raced two photons of light along separate but identical paths. By using resonating optical switches he was able to delay the "decision" as to which of two polarizers each of the two photons would be directed to until the last possible moment. The arrival of the photons beyond the polarizers was monitored electronically. The apparatus was constructed in such a fashion that it was impossible for a speed-of-light signal to be sent from one photon to the other in time to affect the result. In essence the experiment was a sophisticated version of the double-slit experiment with the optical switching doing the equivalent of closing and opening one of the slits. The difference is that the slit equivalents were 15 meters apart. The results of a large number of photon tracking experiments confirmed that Bell's limit had been exceeded! This was a revolutionary outcome. In some way the series of two independent photons in two independent systems had co-operated in spite of the fact that no signal could have passed between them! Spooky stuff indeed! At this juncture the universe receded into indeterminacy!

One of the assertions of quantum physics that we really identify with is that the apparatus is an integral part of the phenomenon we are trying to examine. Aspects apparatus is highly unlikely to have produced valid results. We say this for two reasons.

1. Resonating mirrors were used as an optical switching device. If any arrangement would ensure the co-operation between the two arms of the experiment, this was it. Resonating anythings set up far reaching influences in a loss free system.
2. Aspect did not know about quantum fields. Fifteen meters would be well within reach of a powerful enough quantum field. It is instructive to note that at very low light levels, Aspect was unable to get any correlation between photons. He simply increased the level until the experiment worked! In doing so he increased the strength of the quantum field until it showed the desired result. Had the experiment been valid, it should have worked at the lowest light level.

Clearly at the lowest level, the quantum field of both the apparatus and the particle did not have enough energy to inter-react and influence the result. At higher levels they did. The two arms of the experiment were enveloped in a standing wave configuration of the Quantum field. In a standing wave configuration communication is instantaneous because no signal has to travel. (This concept will be re-visited in the article that explains the way gravity works and why the effects of gravity are instantaneous.) Thus was Bell's limit exceeded. Ironically Aspect’s experiment, if it showed anything, showed proof of the existence of the quantum field! Objective reality has once again prevailed and the universe is safely returned to determinacy!
  • If this article has piqued your interest you could go to www.tedjaeckel.com for more information. In Article 8 I will be describing how Gravity works.
I hope I have not trodden on too many TOEs. Critique of what is presented here is always welcome.

Ted Jaeckel
(Tedjay)
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