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Sharp decay characterization for the incompressible Oldroyd-B model in critical $L^p$ spaces

Analysis of PDEs 2026-05-14 v1

Abstract

This paper establishes a sharp characterization of temporal decay rates for the incompressible Oldroyd-B model in a critical LpL^p framework, covering the physically relevant and mathematically delicate case where both the fluid viscosity and the stress tensor damping are absent. We prove that an L2L^2-type condition on the low-frequencies part of the initial data (u0,τ0)(u_0, \tau_0) is almost both necessary and sufficient for obtaining optimal upper and lower bounds on the temporal decay of solutions in critical Besov spaces. A key contribution is a new decomposition of the stress tensor into its incompressible and compressible parts, combined with the introduction of an effective tensor to handle the loss of regularity in the high-frequencies velocity field. This is the first result to reveal such precise two-sided asymptotics for the incompressible Oldroyd-B model without viscosity or damping.

Keywords

Cite

@article{arxiv.2605.13598,
  title  = {Sharp decay characterization for the incompressible Oldroyd-B model in critical $L^p$ spaces},
  author = {Zhi Chen and Mingwen Fei and Lvqiao Liu and Jiahong Wu},
  journal= {arXiv preprint arXiv:2605.13598},
  year   = {2026}
}

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