activity
20242026
collaborators

7 papers

cond-mat.stat-mech2026

Dielectric response as a source of viscosity in polar liquids

David S. Dean, Haim Diamant

Transport coefficients and dielectric relaxation in liquids are often treated as distinct manifestations of molecular dynamics. We show that, in polar liquids, orientational dipola…

cond-mat.stat-mech2026

Self-phoretic oscillatory motion in a one-dimensional channel

Leah Anderson, David S. Dean

We study a simple model for a particle that is active due to self-phoresis and that has been proposed to model symmetric camphor grains. The particle generates a concentration fiel…

cond-mat.stat-mech2025

Effective description of Taylor dispersion in strongly corrugated channels

Arthur Alexandre, Thomas Guérin, David S. Dean

Taylor dispersion in periodic but highly corrugated channels is studied. Exact analytical expressions for the long-time diffusion constant and drift along the channel are derived t…

cond-mat.soft2025

Solving Lyapunov equations for electrically driven ternary electrolytes -- application to long-range van der Waals interactions

Guangle Du, Bing Miao, David S. Dean

Stochastic density functional theory (SDFT) has been widely used to study the out of equilibrium properties of electrolyte solutions. Examples include investigations of electrical…

cond-mat.stat-mech2025

Correlation decoupling of Casimir interaction in an electrolyte driven by external electric fields

Guangle Du, David S. Dean, Bing Miao +1

It has been established for a long time that the long range van der Waals or thermal Casimir interaction between two semi-infinite dielectrics separated by a distance is screen…

cond-mat.soft2025

Repulsive thermal van der Waals interaction in multi-species asymmetric electrolytes driven by external electric fields

Guangle Du, David S. Dean, Bing Miao +1

It is well established that the long-range component of the thermal van der Waals interaction between two semi-infinite dielectrics becomes short-range when an electrolyte is prese…