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Complexity in the medium-range order of gallium as a polyvalent liquid metal

Chengyun Hua1, Yadu K. Sarathchandran2, Eva Zarkadoula3, Wojciech Dmowski4, Douglas L. Abernathy5, Yuya Shinohara1, and Takeshi Egami1,2,4

Phys. Rev. B 113, L100202 – Published 24 March, 2026

DOI: https://doi.org/10.1103/w2yk-g4wc

Abstract

Simplicity in chemical composition does not always translate into simplicity in the structures and dynamics of liquids and solids. Some elementary liquid metals, such as gallium, show unusual behaviors in thermodynamic and transport properties as a result of their complex atomic structure and dynamics. In this work, we study the real-space atomic correlation function of liquid gallium by neutron scattering. In the pair-distribution function, there exist two kinds of medium-range order (MRO), characterized by oscillations beyond the first nearest neighbors. On the other hand, the first neighbor shell shows only one kind of bond. The two types of MRO are strongly overlapping in space and fluctuating in time. We propose that they are the basis for anomalous behavior of liquid gallium. This view challenges the current view that liquid gallium consists of fluctuating metallic and insulating domains. These findings shed light on the interpretation of similar microscopic anomalies observed in other semimetallic liquids.

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See Also

Real-space atomic dynamics in liquid gallium studied by inelastic neutron scattering

Chengyun Hua, Yadu K. Sarathchandran, Eva Zarkadoula, Wojciech Dmowski, Douglas L. Abernathy, Takeshi Egami, and Yuya Shinohara
Phys. Rev. B 113, 104314 (2026)

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