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20192022
most citedDoes strong repulsion lead to smooth solutions in a repulsion-attraction chemotaxis system even when starting with highly irregular initial data?

1 citations · 1 across the 3 of their papers we have counts for

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math.AP2022

Two new functional inequalities and their application to the eventual smoothness of solutions to a chemotaxis-Navier-Stokes system with rotational flux

Frederic Heihoff

We prove two new functional inequalities of the forms\[ \int_G φ(ψ- \overlineψ) \leq \frac{1}{a}\int_G ψ\ln \left(\frac{\;ψ\;}{ \overlineψ}\right) + \frac{a}{4β_0} \left\{ \int_G ψ…

math.AP20221 cited

Does strong repulsion lead to smooth solutions in a repulsion-attraction chemotaxis system even when starting with highly irregular initial data?

Frederic Heihoff

It has been well established that, in attraction-repulsion Keller-Segel systems of the form\begin{equation*} \left\{ \begin{aligned} u_t &= Δu - χ\nabla \cdot (u\nabla v) + ξ\nabla…

math.AP2022

Global existence and stabilization in a diffusive predator-prey model with population flux by attractive transition

Frederic Heihoff, Tomomi Yokota

The diffusive Lotka-Volterra predator-prey model \begin{eqnarray*} \left\{ \begin{array}{rcll} u_t &=& \nabla\cdot \left[ d_1\nabla u + χv^2 \nabla \Big(\dfrac{u}{v}\Big)\right] +u…

math.AP2020

On the existence of global smooth solutions to the parabolic-elliptic Keller-Segel system with irregular initial data

Frederic Heihoff

We consider the parabolic-elliptic Keller-Segel system \[ \left\{ \begin{aligned} u_t &= Δu - χ\nabla \cdot (u \nabla v), \\ 0 &= Δv - v + u \end{aligned} \right. \tag{} \]…

math.AP2019

Generalized solutions for a system of partial differential equations arising from urban crime modeling with a logistic source term

Frederic Heihoff

We consider the system \[ \left\{ \begin{aligned} u_t &= Δu - χ\nabla \cdot ( \tfrac{u}{v} \nabla v) - uv + ρu - μu^2, \\ v_t &= Δv - v + u v \end{aligned} \right. \tag{} \]…

math.AP2019

Global mass-preserving solutions for a two-dimensional chemotaxis system with rotational flux components coupled with a full Navier-Stokes equation

Frederic Heihoff

We study the chemotaxis-Navier-Stokes system \[\left\{\; \begin{aligned} n_t + u\cdot\nabla n &=Δn - \nabla\cdot (nS(x,n,c)\nabla c), &&x\inΩ, t > 0, \\ c_t + u\cdot\nabla c &=Δc -…