Abstract
The conductance of monoatomic gold wires has been studied using ab initio calculations and the transmission was found to vary with the elastic strain. Counter-intuitively, the conductance was found to increase for the initial stages of the elongation, where the structure has a zigzag shape and the bond angles increase from ≈140° toward ≈160°. After a certain elongation limit, where the angles are relatively high, the bond length elongation associated with a Peierls distortion reverses this trend and the conductance decreases. These simulations are in good agreement with previously unexplained experimental results. © 2013 American Institute of Physics.
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CITATION STYLE
Tavazza, F., Barzilai, S., Smith, D. T., & Levine, L. E. (2013). The increase in conductance of a gold single atom chain during elastic elongation. Journal of Applied Physics, 113(5). https://doi.org/10.1063/1.4790379
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