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Universality in metallic nanocohesion: a quantum chaos approach

Mesoscale and Nanoscale Physics 2007-05-23 v2 chao-dyn Chaotic Dynamics

Abstract

Convergent semiclassical trace formulae for the density of states and cohesive force of a narrow constriction in an electron gas, whose classical motion is either chaotic or integrable, are derived. It is shown that mode quantization in a metallic point contact or nanowire leads to universal oscillations in its cohesive force: the amplitude of the oscillations depends only on a dimensionless quantum parameter describing the crossover from chaotic to integrable motion, and is of order 1 nano-Newton, in agreement with recent experiments. Interestingly, quantum tunneling is shown to be described quantitatively in terms of the instability of the classical periodic orbits.

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Cite

@article{arxiv.cond-mat/9907104,
  title  = {Universality in metallic nanocohesion: a quantum chaos approach},
  author = {C. A. Stafford and F. Kassubek and J. Bürki and H. Grabert},
  journal= {arXiv preprint arXiv:cond-mat/9907104},
  year   = {2007}
}

Comments

corrects spelling of one author name on abstract page (paper is unchanged)