English

Topological origin of peak splitting in the structure factor of liquid water

Soft Condensed Matter 2026-01-12 v1 Chemical Physics

Abstract

The splitting of the principal peak in the structure factor of liquid water is commonly interpreted as evidence of a competition between two distinct local environments. Here, we show that this peak splitting arises from medium-range topological features of the hydrogen-bond network. Using atomistic simulations, we systematically decompose the structure factor into contributions from hydrogen-bonded rings of different sizes. We find that 5-8-membered rings, which dominate the network topology of liquid water at low temperatures, can directly explain the experimentally observed bimodal scattering signal. Among these, 5-membered rings are particularly persistent, maintaining distinct structural signatures even above room temperature. Our findings establish a direct link between the network topology of liquid water and experimentally accessible diffraction features, clarifying the microscopic basis of water's behaviour and suggesting a broader conceptual framework for interpreting the anomalies in tetrahedral network liquids and glasses.

Keywords

Cite

@article{arxiv.2601.05891,
  title  = {Topological origin of peak splitting in the structure factor of liquid water},
  author = {Zoé Faure Beaulieu and Volker L. Deringer and Fausto Martelli},
  journal= {arXiv preprint arXiv:2601.05891},
  year   = {2026}
}