Transverse-resolved RDFs in quasi-1D confined hard spheres can be governed by different leading poles than the global RDF, yielding distinct correlation lengths and frequencies that depend on transverse configuration and density.
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2 Pith papers cite this work. Polarity classification is still indexing.
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cond-mat.soft 2years
2026 2verdicts
UNVERDICTED 2representative citing papers
Shear erases structural differences from sequential gelation in binary colloidal networks but preserves history-dependent transient yielding.
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On the correlation lengths of confined spheres in a cylindrical pore
Transverse-resolved RDFs in quasi-1D confined hard spheres can be governed by different leading poles than the global RDF, yielding distinct correlation lengths and frequencies that depend on transverse configuration and density.
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Shear-Induced Structural Convergence but Formation-History-Dependent Yielding in Sequentially Gelled Binary Colloidal Networks
Shear erases structural differences from sequential gelation in binary colloidal networks but preserves history-dependent transient yielding.