Designing Coulombic Contact Interactions between Polarizable Particles through Asymmetry

Fuente: arXiv
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Main Authors: Duan, Yanyu, Gan, Zecheng
Format: Preprint
Published: 2026
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author Duan, Yanyu
Gan, Zecheng
author_facet Duan, Yanyu
Gan, Zecheng
contents Polarizable particle systems, including charged colloids, polarizable ions, biomolecular assemblies, and soft nanomaterials, can exhibit contact electrostatic interactions that depart strongly from Coulomb behavior when dielectric mismatch and geometric singularities amplify polarization effects. Here we use charged dielectric spheres as a model system and show that these polarization contributions can be canceled by jointly tuning size, charge, and dielectric asymmetries. By extending a recently developed image-charge formula to contacting dielectric spheres, we derive analytical conditions under which the contact interaction reduces to the bare Coulomb form. Accurate two-sphere calculations validate the resulting contact design rules with relative errors below $3\%$. Strikingly, many-body molecular dynamics simulations reveal that systems satisfying these two-body rules self-assemble into structures that closely match their pure Coulomb references. These results establish asymmetry as a route for turning electrostatic complexity into Coulombic simplicity at contact, with implications for controlled self-assembly and materials design.
format Preprint
id arxiv_https___arxiv_org_abs_2605_12489
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Designing Coulombic Contact Interactions between Polarizable Particles through Asymmetry
Duan, Yanyu
Gan, Zecheng
Soft Condensed Matter
Computational Physics
Polarizable particle systems, including charged colloids, polarizable ions, biomolecular assemblies, and soft nanomaterials, can exhibit contact electrostatic interactions that depart strongly from Coulomb behavior when dielectric mismatch and geometric singularities amplify polarization effects. Here we use charged dielectric spheres as a model system and show that these polarization contributions can be canceled by jointly tuning size, charge, and dielectric asymmetries. By extending a recently developed image-charge formula to contacting dielectric spheres, we derive analytical conditions under which the contact interaction reduces to the bare Coulomb form. Accurate two-sphere calculations validate the resulting contact design rules with relative errors below $3\%$. Strikingly, many-body molecular dynamics simulations reveal that systems satisfying these two-body rules self-assemble into structures that closely match their pure Coulomb references. These results establish asymmetry as a route for turning electrostatic complexity into Coulombic simplicity at contact, with implications for controlled self-assembly and materials design.
title Designing Coulombic Contact Interactions between Polarizable Particles through Asymmetry
topic Soft Condensed Matter
Computational Physics
url https://arxiv.org/abs/2605.12489