English

Quantized ionic conductance in nanopores

Soft Condensed Matter 2009-09-26 v2 Other Condensed Matter

Abstract

Ionic transport in nanopores is a fundamentally and technologically important problem in view of its occurrence in biological processes and its impact on novel DNA sequencing applications. Using microscopic calculations, here we show that ion transport may exhibit strong nonlinearities as a function of the pore radius reminiscent of the conductance quantization steps as a function of the transverse cross section of quantum point contacts. In the present case, however, conductance steps originate from the break up of the hydration layers that form around ions in aqueous solution. Once in the pore, the water molecules form wavelike structures due to multiple scattering at the surface of the pore walls and interference with the radial waves around the ion. We discuss these effects as well as the conditions under which the step-like features in the ionic conductance should be experimentally observable.

Keywords

Cite

@article{arxiv.0902.3647,
  title  = {Quantized ionic conductance in nanopores},
  author = {Michael Zwolak and Johan Lagerqvist and Massimiliano Di Ventra},
  journal= {arXiv preprint arXiv:0902.3647},
  year   = {2009}
}

Comments

6 pages, 3 figures, updated to fix fonts

R2 v1 2026-06-21T12:13:56.492Z