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Conductance oscillations in zigzag platinum chains

V. M. Garcia-Suarez, A. R. Rocha, S. W. Bailey, C. J. Lambert, S. Sanvito, J. Ferrer

cond-mat.mtrl-sciarXiv:cond-mat/0505487

Abstract

Using first principles simulations we perform a detailed study of the structural, electronic and transport properties of monoatomic platinum chains, sandwiched between platinum electrodes. First we demonstrate that the most stable atomic configuration corresponds to a zigzag arrangement that gradually straightens as the chains are stretched. Secondly, we find that the conductance at equilibrium atomic spacing does not oscillate with the number of atoms n in the chain, but instead decreases almost monotonically with n. In contrast, the conductances of chains of fixed n oscillate as the end atoms are pulled apart, due to the gradual closing and opening of conductance channels as the chain straightens.

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