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Substitution Delone Sets
This paper addresses the problem of describing aperiodic discrete structures
that have a self-similar or self-affine structure. Substitution Delone set
families are families of Delone sets (X_1, ..., X_n) in R^d that satisfy an
inflation functional equation under the action of an expanding integer matrix
in R^d. This paper studies such functional equation in which each X_i is a
discrete multiset (a set whose elements are counted with a finite
multiplicity). It gives necessary conditions on the coefficients of the
functional equation for discrete solutions to exist. It treats the case where
the equation has Delone set solutions. Finally, it gives a large set of
examples showing limits to the results obtained.Comment: 34 pages, latex file; some results in Sect 5 rearranged and theorems
reformulate
Screened Coulomb interactions of general macroions with nonzero particle volume
A semianalytical approach is developed to calculate the effective pair
potential of rigid arbitrarily shaped macroions with a nonvanishing particle
volume, valid within linear screening theory and the mean-field approximation.
The essential ingredient for this framework is a mapping of the particle to a
singular charge distribution with adjustable effective charge and shape
parameters determined by the particle surface electrostatic potential. For
charged spheres this method reproduces the well-known
Derjaguin-Landau-Verwey-Overbeek (DLVO) potential. Further exemplary benchmarks
of the method for more complicated cases, like tori, triaxial ellipsoids, and
additive torus-sphere mixtures, leads to accurate closed-form integral
expressions for all particle separations and orientations. The findings are
relevant for determining the phase behaviour of macroions with experiments and
simulations for various particle shapes.Comment: V2: 9 pages, 5 figures; Appendix: 6 pages, 5 figure
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