FCC versus HCP via parametric density
نویسنده
چکیده
We consider the asymptotic behavior of nite sphere packings in the face centered cubic lattice (fcc), the hexagonal closest packing (hcp) and related periodic structures. We use concepts as the parametric density and the density deviation and compare packings in diierent periodic structures. We prove that for any structure M there is a range for the parameter % such that the regular octahedron in fcc is asymptotically %{denser than any polytope in M. This result has a physical and a mathematical aspect: (a) Most of the noble gases cristallize in fcc. So it is a model for this physical fact. The Lennard{Jones potential does not reeect this fact. (b) Further it shows that large sphere packings of the critical lattice converge faster to the density L = = p 18 than other periodic sphere packings. So it is a nite contribution to the Kepler problem.
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ورودعنوان ژورنال:
- Discrete Mathematics
دوره 211 شماره
صفحات -
تاریخ انتشار 2000