Anomalous Scaling Laws of Dispersion Interactions in Anisotropic Nanostructures
Abstract
The van der Waals (vdW) dispersion interaction between two finite neutral objects typically follows the standard nonretarded law. Here, we reveal an anomalous scaling law between nanostructures with strong geometric or electric anisotropy, driven intrinsically by symmetry-restricted plasmon interactions. At finite anisotropy ratios, a scaling crossover from to occurs due to plasmon mode competition, marked by a finite critical separation. Furthermore, we demonstrate tunability of interlayer vdW forces in two-dimensional materials with strong in-plane electronic anisotropy. By pushing the conventional lower bound of vdW scaling laws, these findings open new opportunities for tailoring nanoscale forces, with potential applications in low-stiction nanomechanical devices, vdW superstructure assembly, metamaterials, and molecular simulations.
Keywords
Cite
@article{arxiv.2506.23830,
title = {Anomalous Scaling Laws of Dispersion Interactions in Anisotropic Nanostructures},
author = {Hui Pan and Yuhua Ren and Jian-Sheng Wang},
journal= {arXiv preprint arXiv:2506.23830},
year = {2025}
}
Comments
7 pages, 4 figures