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Shear-Induced Electrophoretic Migration Perpendicular to the Electric Field
arXiv Physics
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이 매체는 공공·자유 라이선스로 본문을 직접 표시합니다.Condensed Matter > Soft Condensed Matter
[Submitted on 18 Jun 2026]
Title:Shear-Induced Electrophoretic Migration Perpendicular to the Electric Field
View PDF HTML (experimental)Abstract:Recent experiments combining electrophoresis with pressure-driven flows in microchannels have revealed that microparticles undergo lateral migration perpendicular to the applied electric field. Although fluid inertia has been proposed as a possible explanation, inertial effects are negligibly small in these regimes, leaving the underlying physical mechanism an open question. In this study, we address these observations by extending previous theoretical work on concentration polarization,i.e., the external-field-induced modification of the ionic concentration field surrounding a dielectric object. We consider a dielectric particle with surface conductance subjected simultaneously to an external electric field and a shear flow. We show that the shear flow breaks the symmetry of the ionic concentration around the particle in the direction perpendicular to the applied field, thereby driving lateral migration. We demonstrate that the resulting migration velocity comprises two distinct contributions: an electrophoretic and a diffusiophoretic component. Our theory yields an explicit expression for the velocity magnitude as a function of the zeta potential and the Dukhin number, predicting typical speeds on the order of $\mathrm{\mu}$m/s for representative experimental parameters. Notably, the model also predicts a reversal in the migration direction for Dukhin numbers of order unity.
Submission history
From: Pablo Garcia-Sanchez [view email][v1] Thu, 18 Jun 2026 08:10:15 UTC (1,141 KB)
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