Jump to content

Sub microscopic description of the diffraction phenomenon: Difference between revisions

From Natural Philosophy Wiki
Imported from text file
 
ClaudeBot (talk | contribs)
infobox: unlink bare volume/issue numbers (removes redlinks to numeric titles)
 
(3 intermediate revisions by 2 users not shown)
Line 5: Line 5:
| keywords = [[wave-particle]], [[photons]], [[inertons]], [[diffraction of photons]]
| keywords = [[wave-particle]], [[photons]], [[inertons]], [[diffraction of photons]]
| published = 2010
| published = 2010
| journal = [[None]]
| volume = Nonlinear Optics, Quantum Opti
| volume = [[Nonlinear Optics, Quantum Opti]]
| number = 4
| number = [[4]]
| num_pages = 14
| num_pages = 14
| pages = 273-286
| pages = 273-286
Line 36: Line 35:
transient photons.
transient photons.


[[Category:Scientific Paper]]
[[Category:Scientific Paper|sub microscopic description diffraction phenomenon]]


[[Category:Structure]]
[[Category:Structure|sub microscopic description diffraction phenomenon]]
[[Category:Electrodynamics]]
[[Category:Electrodynamics|sub microscopic description diffraction phenomenon]]

Latest revision as of 09:31, 21 July 2026

Scientific Paper
TitleSub microscopic description of the diffraction phenomenon
Read in fullLink to paper
Author(s)Volodymyr V Krasnoholovets
Keywordswave-particle, photons, inertons, diffraction of photons
Published2010
VolumeNonlinear Optics, Quantum Opti
Number4
No. of pages14
Pages273-286

Read the full paper here

Abstract

It is shown that a detailed sub microscopic consideration denies the waveparticle

duality for both material particles and field particles, such as

photons. In the case of particles, their ψ-wave function is interpreted as the

particle?s field of inertia and hence this field is characterised by its own field

carriers, inertons. Inertons and photons are considered as quasi-particles,

excitations of the real space constructed in the form of a tessel-lattice. The

diffraction of photons is explained as the deflection of photons from their

path owing to transverse flows of inertons, which appear in the substance

under consideration at the decay of non-equilibrium phonons produced by

transient photons.