Transverse excitations in liquid metals

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Abstract

The transverse acoustic excitation modes were detected by inelastic x-ray scattering in liquid Ga, Cu and Fe in the Q range around 10 nm-1 using a third-generation synchrotron radiation facility, SPring-8, although these liquid metals are mostly described by a simple hard-sphere liquid. Ab initio molecular dynamics simulations clearly support this finding for liquid Ga. From the detailed analyses for the S(Q,ω) spectra with good statistic qualities, the lifetime of less than 1 ps and the propagating length of less than 1 nm can be estimated for the transverse acoustic phonon modes, which correspond to the lifetime and size of cages formed instantaneously in these liquid metals. The microscopic Poisson's ratio estimated from the dynamic velocities of sound is 0.42 for liquid Ga and about-0.2 for liquid transition metals, indicating a rubber-like soft and extremely hard elastic properties of the cage clusters, respectively. The origin of these microscopic elastic properties is discussed in detail. © 2013 American Institute of Physics.

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Hosokawa, S., Munejiri, S., Inui, M., Kajihara, Y., Pilgrim, W. C., Baron, A. Q. R., … Hoshino, K. (2013). Transverse excitations in liquid metals. In AIP Conference Proceedings (Vol. 1518, pp. 695–702). https://doi.org/10.1063/1.4794661

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