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Ground States of Crystalline Caps: Generalized Jellium on Curved Space

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arxiv 1906.03301 v2 pith:7ZWQREW7 submitted 2019-06-07 cond-mat.soft cond-mat.mtrl-scinlin.PS

Ground States of Crystalline Caps: Generalized Jellium on Curved Space

classification cond-mat.soft cond-mat.mtrl-scinlin.PS
keywords capsgroundstatescrystallinejelliumcrystalscurvedelastic
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study the structure and elastic energy of the ground states of crystalline caps conforming to a spherical surface. These ground states consist of positive disclination defects in structures spanning from flat and weakly curved crystals to closed shells. We compare two different continuum theories and one discrete-lattice approach for the elastic energy of defective caps. We first investigate the transition between defect-free caps to single-disclination ground states and show that it is characterized by continuous symmetry-breaking transition. Further, we show that ground states with icosahedral subgroup symmetries in caps arise across a range of curvatures, even far from the closure point of complete shells. Thus, while superficially similar to other models of 2D `jellium' (e.g. superconducting disks and 2D Wigner crystals), the interplay between the free edge of crystalline caps and the non-Euclidean geometry of its embedding leads to non trivial ground state behaviors, without counterpart in planar jellium models.

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