Configurations of polymers attached to probes
arXiv:0910.0420 · doi:10.1209/0295-5075/88/48001
Abstract
We study polymers attached to spherical (circular) or paraboloidal (parabolic) probes in three (two) dimensions. Both self-avoiding and random walks are examined numerically. The behavior of a polymer of size attached to the tip of a probe with radius of curvature , differs qualitatively for large and small values of the ratio . We demonstrate that the scaled compliance (inverse force constant) , and scaled mean position of the polymer end-point can be expressed as a function of . Scaled compliance is anisotropic, and quite large in the direction parallel to the surface when . The exponent , characterizing the number of polymer configurations, crosses over from a value of - characteristic of a planar boundary - at small to one reflecting the overall shape of the probe at large . For a spherical probe the crossover is to an unencumbered polymer, while for a parabolic probe we cannot rule out a new exponent.
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References in corpus (3)
Cited by in corpus (6)
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