Exciton matter sustained by colossal dispersive interactions due to enhanced polarizability: Possible clue to ball lightning
Abstract
Recently Gilman has pointed out that the material state of a ball lightning is both highly cohesive and flexible. He makes a specific proposal for a cohesive state arising from (colossal) Van-der-Waals attraction between highly polarizable Rydberg atoms produced under a linear lightning. We accept his general suggestions but propose that the colossal Van-der-Waals coupling may also arise from the enhanced polarizability of surrogate molecular clusters, due to the polaron gap narrowing effect. We consider a few illuminating cases and present calculations for the ammonia molecule. Although being unable to identify the exact nature of the surrogate molecules at least for the time-being, we suggest a general scenario of photoexcited vibronic excitons forming a supersaturated surrogate gas phase in which a ball arises as a result of condensation. The orange color of the luminous ball is due to radiative exciton deexcitation and suggests that there may be a unique surrogate material for ball lightning.
Keywords
Cite
@article{arxiv.physics/0509212,
title = {Exciton matter sustained by colossal dispersive interactions due to enhanced polarizability: Possible clue to ball lightning},
author = {Mladen Georgiev and Jai Singh},
journal= {arXiv preprint arXiv:physics/0509212},
year = {2007}
}
Comments
9 pages, 2 figures, pdf format