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권봉석

Kwon, Bongsuk
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Linear Stability of Solitary Waves for the Isothermal Euler-Poisson System

Author(s)
Bae, JunsikKwon, Bongsuk
Issued Date
2022-01
DOI
10.1007/s00205-021-01722-8
URI
https://scholarworks.unist.ac.kr/handle/201301/55135
Fulltext
https://link.springer.com/article/10.1007%2Fs00205-021-01722-8
Citation
ARCHIVE FOR RATIONAL MECHANICS AND ANALYSIS, v.243, pp.257 - 327
Abstract
We study the asymptotic linear stability of a two-parameter family of solitary waves for the isothermal Euler-Poisson system. When the linearized equations about the solitary waves are considered, the associated eigenvalue problem in L-2 space has a zero eigenvalue embedded in the neutral spectrum, i.e., there is no spectral gap. To resolve this issue, use is made of an exponentially weighted L-2 norm so that the essential spectrum is strictly shifted into the left-half plane, and this is closely related to the fact that solitary waves exist in the super-ion-sonic regime. Furthermore, in a certain long-wavelength scaling, we show that the Evans function for the Euler-Poisson system converges to that for the Korteweg-de Vries (KdV) equation as an amplitude parameter tends to zero, from which we deduce that the origin is the only eigenvalue on its natural domain with algebraic multiplicity two. We also show that the solitary waves are spectrally stable in L-2 space. Moreover, we discuss (in)stability of large amplitude solitary waves.
Publisher
SPRINGER
ISSN
0003-9527
Keyword
NERVE AXON EQUATIONSASYMPTOTIC STABILITYEXPONENTIAL DICHOTOMIESSOLITONSPLASMALIMIT

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