English

Densest versus jammed packings of bent-core trimers

Soft Condensed Matter 2019-10-02 v1

Abstract

We identify putatively maximally dense packings of tangent-sphere trimers with fixed bond angles (θ=θ0\theta = \theta_0) using a novel method, and contrast them to the disordered jammed states they form under quasistatic and dynamic athermal compression. Incommensurability of θ0\theta_0 with 3D close-packing does not by itself inhibit formation of dense 3D crystals; all θ0\theta_0 allow formation of crystals with ϕmax(θ0)>0.97ϕcp\phi_{max}(\theta_0) > 0.97\phi_{cp}. Trimers are always able to arrange into periodic structures composed of close-packed bilayers or trilayers of triangular-lattice planes, separated by ``gap layers'' that accomodate the incommensurability. All systems have ϕJ\phi_J significantly below the monomeric value, indicating that trimers' quenched bond-length and bond-angle constraints always act to promote jamming. ϕJ\phi_J varies strongly with θ0\theta_0; straight (θ0=0\theta_0 = 0) trimers minimize ϕJ\phi_J while closed (θ0=120\theta_0 = 120^\circ) trimers maximize it. Marginally jammed states of trimers with lower ϕJ(θ0)\phi_J(\theta_0) exhibit quantifiably greater disorder, and the lower ϕJ\phi_J for small θ0\theta_0 is apparently caused by trimers' decreasing effective configurational freedom as they approach linearity.

Keywords

Cite

@article{arxiv.1907.00035,
  title  = {Densest versus jammed packings of bent-core trimers},
  author = {Austin D. Griffith and Robert S. Hoy},
  journal= {arXiv preprint arXiv:1907.00035},
  year   = {2019}
}