Origin of the Compton and de Broglie Relations: Difference between revisions
Appearance
Imported from text file |
infobox: unlink bare volume/issue numbers (removes redlinks to numeric titles) |
||
| (One intermediate revision by one other user not shown) | |||
| Line 5: | Line 5: | ||
| published = 2008 | | published = 2008 | ||
| journal = [[Galilean Electrodynamics]] | | journal = [[Galilean Electrodynamics]] | ||
| volume = | | volume = 19 | ||
| number = | | number = 1 | ||
| pages = 16-21 | | pages = 16-21 | ||
}} | }} | ||
| Line 16: | Line 16: | ||
[[Category:Scientific Paper|origin compton broglie relations]] | [[Category:Scientific Paper|origin compton broglie relations]] | ||
[[Category:Relativity]] | [[Category:Relativity|origin compton broglie relations]] | ||
Latest revision as of 09:36, 21 July 2026
| Scientific Paper | |
|---|---|
| Title | Origin of the Compton and de Broglie Relations |
| Author(s) | William C Daywitt |
| Keywords | Compton wavelength, de Broglie wavelength, Einstein field equation, fine structure constant, gravitational constant, Planck constant, Planck vacuum |
| Published | 2008 |
| Journal | Galilean Electrodynamics |
| Volume | 19 |
| Number | 1 |
| Pages | 16-21 |
Abstract
This paper suggests that the Compton and de Broglie relations have their origin in the Planck vacuum (PV) state as a balance between van-der-Waals- and Coulomb-type forces. The Compton and de Broglie radii of the elementary particles are those radii at which these two forces balance. Calculations suggest that the Einstein field equation describes the curvature of a spacetime associated with the PV. The elementary particles appear to emerge from the PV rather than the relativistic-particle vacuums (e.g. the Dirac vacuum of the electron), which are positive-energy states in the present PV approximation. The most recent model of the PV is presented.