bhobba said:
Well I think we need to be clear what explain means. With the assumption the field changes on observation then the double slit is explained. Did you expect the explanation not to assume some things? Any explanation does that.
It doesn't explain the measurement 'problem' (postulate is probably a better description than problem - but its pretty standard so I will stick with it) which any observation in QM has - but in general QM merely accepts it as a primitive of the theory.
In modern times decoherence is used to elucidate better the measurement postulate which has a number of parts. It explains a number of those parts such as a preferred basis - it doesn't explain the so called problem of outcomes which colloquially is why do we get any outcomes at all, or more technically how an improper mixed state becomes a proper one. Exactly what that issue is, is explained here (sorry that its rather technical but we are getting into deep waters here):
http://philsci-archive.pitt.edu/5439/1/Decoherence_Essay_arXiv_version.pdf
If I remember correctly that book you got also mentions decoherence - but doesn't give any details. This may help at your level:
http://www.ipod.org.uk/reality/reality_decoherence.asp
Thanks
Bill
Bill. Have you actually read the book you recommended days ago (the "Fields color theory escaped Einstein"? I finished reading it and it's a very unusual book with a different interpretation of QFT and even special relativity. For example. There is a passage inside that says:
"While I hope you can accept, as did FitzGerald and Lorentz, that length contraction happens because the field equations require it, it would be nice to have some intuitive insight into the phenomenon. We must recognize that even if the molecular configuration of an object appears to be static, the component fields are always interacting with each other. The EM field interacts with the matter fields and vice versa, the strong field interacts with with the nucleon fields, etc. These interactions are what holds the object together. Now if the object is moving very fast, this communication among fields will become more difficult because the fields, on the average, will have to interact through greater distances. Thus the object in motion must somehow adjust itself so that the same interaction among fields can occur. How can it do this? The only way is by reducing the distance the component fields must travel. Since the spacing between atoms and molecules, and hence the dimensions of an object, are determined by the nature and configuration of the force fields that bind them together, the dimensions of an object must therefore be affected by motion"
He also explains why time dilation occurs because the fields need finite time to travel in between atoms. And the reason c can't be exceeded is because the fields need finite speed. And mass increase because of more inertia the fields have to resist. Ok. Why don't I see these explanations given by the average physicists? And how many subscribe to this view?
About General Relativity. It says something like "What Schwinger is saying is that four dimensional geometry does not exist in the real world - it is "impossible", but matheticians "who think algebraically" are free to construct equations that would describe it if is did exist. By stretching our minds, some of us can even form a vague mental image of what four-dimensional curvature would be like if it did not exist. Nevertheless, saying that the gravitational field equations are equivalent to curvature is not the same as saying there is curvature. In QFT, the gravitational field is just another force fields, like the EM, strong and weak fields, albeit with a greater complexity that is reflected in its higher spin value of 2."
Read the rest in the book.
For others besides Bill. Can you share or comment what could possible be wrong with it?