Fractional Differential Model of Resonant Transfer of Excitations in Plasma
- Authors: Uchaikin V.V.1, Kozhemyakina E.V.1
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Affiliations:
- Ulyanovsk State University
- Issue: Vol 61, No 9 (2019)
- Pages: 1551-1558
- Section: Plasma Physics
- URL: https://journal-vniispk.ru/1064-8887/article/view/240943
- DOI: https://doi.org/10.1007/s11182-018-1571-7
- ID: 240943
Cite item
Abstract
The most crucial feature of excitation transfer in low-temperature plasma forming the physical basis for operation of contemporary lighting devices is participation of resonant photons in the process. The widely used approximation of complete frequency redistribution assumes independence of the emitted photon frequency from frequency of the absorbed one. Averaged over frequency distribution in a resonance line, the natural transfer equation with the exponential kernel becomes the equation with an inverse power kernel, which in case of an infinite homogeneous medium is asymptotically equivalent to the Laplace equation of non-integer (fractional) order, considered in this article.
Keywords
About the authors
V. V. Uchaikin
Ulyanovsk State University
Author for correspondence.
Email: vuchaikin@gmail.com
Russian Federation, Ulyanovsk
E. V. Kozhemyakina
Ulyanovsk State University
Email: vuchaikin@gmail.com
Russian Federation, Ulyanovsk
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