Scinovex
articleTop 1% cited

Hidden structure in liquids

Physical review. A, General physics · 1982 · Vol. 25(2) · pp. 978–989

Abstract

The canonical partition function for classical many-body systems is transformed so that the temperature-independent packing statistics and the thermal excitations are uniquely separated. This requires classification of particle configurations according to multidimensional potential-energy minima that can be reached by steepest-descent paths ("quenches"). Such classifications have been constructed for several starting configurations in the solid, fluid, and coexistence phases of the two-dimensional Gaussian core model. These quenches reveal a remarkable degree of polycrystalline order hidden within the fluid phase by "vibrational" distortion, and that order appears to have a large correlation length. The results suggest that melting hinges upon defect softening in the quenched packings, and a crude "theory" of melting for the Gaussian core model is developed in the Appendix.

Material Dynamics and PropertiesTheoretical and Computational PhysicsPhase Equilibria and ThermodynamicsMaxima and minimaPartition function (quantum field theory)GaussianStatistical physicsPhysicsExponential functionDistortion (music)Structure factorMaterials scienceThermodynamics
Citations
1,354
FWCI
12.86
field-weighted impact
References
18
Percentile
99%
vs. same field & year
Citations per year
Cited by
Amorphous systems in athermal, quasistatic shear
Physical Review E · 2006 · 640 citations
References
Dislocation-mediated melting in two dimensions
Physical review. B, Condensed matter · 1979 · 2,343 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Hidden structure in liquids · Scinovex