On the blowup mechanism of smooth solutions to 1D quasilinear strictly hyperbolic systems with large initial data
Abstract
For the first order 1D quasilinear strictly hyperbolic system with , where is small, and , when at least one eigenvalue of is genuinely nonlinear, it is well-known that on the finite blowup time , the derivatives blow up while the solution keeps to be small. For the 1D scalar equation or strictly hyperbolic system (corresponding to ), if the smooth solution blows up in finite time, then the blowup mechanism can be well understood (i.e., only the blowup of happens). In the present paper, for the () strictly hyperbolic system with a class of large initial data, we are concerned with the blowup mechanism of smooth solution on the finite blowup time and the detailed singularity behaviours of near the blowup point. Our results are based on the efficient decomposition of along the different characteristic directions, the suitable introduction of the modulated coordinates and the global weighted energy estimates.
Keywords
Cite
@article{arxiv.2204.08181,
title = {On the blowup mechanism of smooth solutions to 1D quasilinear strictly hyperbolic systems with large initial data},
author = {Jun Li and Gang Xu and Huicheng Yin},
journal= {arXiv preprint arXiv:2204.08181},
year = {2022}
}