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We show that, for a standard continuously polydisperse model with particle-diameter distribution P (σ) ∝σ^-3 and polydispersity index Δ, employing a combination of standard SWAP moves and transient degree of freedom (TDOF) moves during a Lubachevsky-Stillinger-like particle-growth process dramatically increases the generated packings' jamming densities ϕ₉ (Δ) and coordination numbers Z₉ (Δ), for a wide range of Δ. The fractional increase in ϕ₉ (Δ) obtained by employing these moves first increases rapidly with Δ, then plateaus at 6-7% over the range 0. 1≲Δ≤0. 5; the obtained ϕ₉ are as high as 0. 747 (for Δ=0. 50). These density increases are achieved without producing clearly noticeable crystallization or increased fractionation, despite the fact that the packings are quite hyperstatic for all Δ>0. SWAP and TDOF moves also reduce packings' rattler populations by as much as 99% and increase their bulk moduli by as much as 80%.
Robert S. Hoy (Mon,) studied this question.