arXiv · 0903.2780
Properties of Physical Systems: Transient Singularities on Borders and Surface Transitive Zones
Abstract
Certain alternative properties of physical systems are describable by supports of arguments of response functions (e.g. light cone, borders of media) and expressed by projectors; corresponding equations of restraints lead to dispersion relations, theorems of counting, etc. As supports are measurable, their absolutely strict borders contradict the spirit of quantum theory and their quantum evolution leading to appearance of subtractions or certain needed flattening would be considered. Flattening of projectors introduce transitive zones that can be examined as a specification of adiabatic hypothesis or the Bogoliubov regulatory function in QED. For demonstration of their possibilities the phenomena of refraction and reflection of electromagnetic wave are considered; they show, in particular, the inevitable appearing of double electromagnetic layers on all surfaces that formerly were repeatedly postulated, etc. Quantum dynamics of projectors proves the neediness of subtractions that usually are artificially adding and express transient singularities and zones in squeezed forms.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Mark E. Perel'man. 2009-03-16. Properties of Physical Systems: Transient Singularities on Borders and Surface Transitive Zones. https://doi.org/10.1007/s10773-009-0044-8
Cite the original work for its findings. Save a collection to share your selection of sources.