Persistence of a pinch in a pipe
arXiv:cond-mat/0607339 · doi:10.1209/0295-5075/77/40003
Abstract
The response of low-dimensional solid objects combines geometry and physics in unusual ways, exemplified in structures of great utility such as a thin-walled tube that is ubiquitous in nature and technology. Here we provide a particularly surprising consequence of this confluence of geometry and physics in tubular structures: the anomalously large persistence of a localized pinch in an elastic pipe whose effect decays very slowly as an oscillatory exponential with a persistence length that diverges as the thickness of the tube vanishes, which we confirm experimentally. The result is more a consequence of geometry than material properties, and is thus equally applicable to carbon nanotubes as it is to oil pipelines.
6 pages, 3 figures
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- Plastic deformation of tubular crystals by dislocation glide
- Effective elasticity of a flexible filament bound to a deformable cylindrical surface
- Nambu-Goldstone modes and diffuse deformations in elastic shells
- Curvature regularization near contacts with stretched elastic tubes
- Ordered buckling structures in a twisted crimped tube