Well-Posedness and Optimal Time-Decay for Compressible MHD System in Besov Space
In this paper, firstly, we prove the global well-posedness of three dimensional compressible magnetohydrodynamics equations for some classes of large initial data, which may have large oscillation for the density and large energy for the velocity and magnetic field. Secondly, we prove the optimal ti...
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Main Authors | , , |
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Format | Journal Article |
Language | English |
Published |
29.10.2014
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Subjects | |
Online Access | Get full text |
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Summary: | In this paper, firstly, we prove the global well-posedness of three
dimensional compressible magnetohydrodynamics equations for some classes of
large initial data, which may have large oscillation for the density and large
energy for the velocity and magnetic field. Secondly, we prove the optimal time
decay for the compressible magnetohydrodynamics equations with low regularity
assumptions about the initial data. Especially, we can obtain the optimal
$L^{2}$ time decay rate when the initial data small in the critical Besov space
(no small condition in space $H^{N/2+1}$). When we calculate the optimal time
decay rate, we use differential type energy estimates in homogeneous Besov
space, evolution in negative Besov space and the well-posedness results proved
in the first part. |
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DOI: | 10.48550/arxiv.1410.7949 |