Naked Science Forum

On the Lighter Side => New Theories => Topic started by: McQueen on 06/04/2017 11:27:14

Title: Metastable states and Neo-Classical Physics (GAT)
Post by: McQueen on 06/04/2017 11:27:14
The existence of certain phenomenon associated with metastable states almost serves as a confirmation of the theories formulated by neo-Classical Physics (also known as Gestalt Aether Theory).  Take for instance the caesium atoms that are used in atomic clocks, it is surely an amazing phenomenon that the valence electrons in these atoms as they change state are oscillating at the amazing  rate of almost 10,000,000,000 Hz per second, yet ( and this is the amazing part); there is no hint of the 10 Gigahertz approx.  radio wave ( micro wave) that this oscillation should give rise to! 


(https://www.mediafire.com/convkey/f0e9/uysum4luworknkv4g.jpg) (http://www.mediafire.com/view/uysum4luworknkv/Csclock.gif)


In some respects this is a confirmation of what neo-classical theory states, namely that radio-waves are composite waves and are never directly emitted by individual electrons. An argument might be made that the 21 cm microwave emitted by Hydrogen violates this rule but the microwave cavity is tuned to this frequency and one prediction that can be made is that a discernible current should be detected at opposite poles of the microwave cavity, showing that the creation of microwaves takes place in a similar manner to that of other radio waves.  In general atoms occupying a metastable state never emit radiation. However in the case of the hydrogen atom the fact that no neutrons are present and given the resultant simpler structure, it is possible that an exception exists. (Subject to the fact that radio waves are composite waves.).
   

Another significant outcome  that can be derived from the phenomenon of the metastable state of the caesium atom is that one objection that has been made to the Neo-Classical physics (Gestalt Aether Theory) theory of photon structure and generation, namely that the length given for the conduction photon of 1.2 x 10 -7 m  is already available  in lasers. Yet the 1.2 x 10 -7 m wave length generate by lasers might in itself be a composite  or heterodyned wave length. Looking at the oscillation of the caesium valence electron that has no resultant  radiation, it seems that  the concept of conduction photons that are responsible for the  propagation an electric current and for the electromagnetic (field) loops outside the wire are definitely feasible.

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