Arkus Natalie, Manoharan Vinothan N, Brenner Michael P
School of Engineering and Applied Sciences, Harvard University, Cambridge, Massachusetts 02138, USA.
Phys Rev Lett. 2009 Sep 11;103(11):118303. doi: 10.1103/PhysRevLett.103.118303.
We calculate the ground states of hard-sphere clusters, in which n identical hard spherical particles bind by isotropic short-ranged attraction. Combining graph theoretic enumeration with basic geometry, we analytically solve for clusters of n<or=10 particles satisfying minimal rigidity constraints. For n<or=9 the ground state degeneracy increases exponentially with n, but for n>9 the degeneracy decreases due to the formation of structures with >3n-6 contacts. Interestingly, for n=10 and possibly at n=11 and n=12, the ground states of this system are subsets of hexagonal close-packed crystals. The ground states are not icosahedra at n=12 and n=13. We relate our results to the structure and thermodynamics of suspensions of colloidal particles with short-ranged attractions.
我们计算了硬球团簇的基态,其中n个相同的硬球形粒子通过各向同性短程吸引力结合在一起。通过将图论枚举与基本几何相结合,我们解析求解了满足最小刚性约束的n≤10个粒子的团簇。对于n≤9,基态简并度随n呈指数增加,但对于n>9,由于形成了具有>3n - 6个接触点的结构,简并度降低。有趣的是,对于n = 10,可能在n = 11和n = 12时,该系统的基态是六方密堆积晶体的子集。在n = 12和n = 13时,基态不是二十面体。我们将我们的结果与具有短程吸引力的胶体粒子悬浮液的结构和热力学联系起来。