English

Atomic Motion in Single H$_{2}$ and D$_{2}$ Molecule Junction Induced by Phonon Excitation

Materials Science 2015-05-14 v1

Abstract

We have investigated Au atomic contacts in H2_{2} and D2_{2} environment by conductance measurement and dI/dVdI/dV spectroscopy. A single H2_{2} or D2_{2} molecule was found to bridge Au electrodes. In the case of the Au/H2_{2}/Au junction, symmetric peaks were observed in dI/dVdI/dV spectra, while they were not observed for the Au/D2_{2}/Au junction. The shape of the peaks in dI/dVdI/dV spectra originated from the structural change of the single molecule junction induced by the phonon excitation. The structural change could occur only for the Au/H2_{2}/Au junction. The difference in the two single molecule junctions could be explained by larger zero point energy of Au-H2_{2} vibration mode than that in the Au/H2_{2}/Au junction.

Keywords

Cite

@article{arxiv.0912.2782,
  title  = {Atomic Motion in Single H$_{2}$ and D$_{2}$ Molecule Junction Induced by Phonon Excitation},
  author = {Manabu Kiguchi and Tomoka Nakazumi and Kunio Hashimoto and Kei Murakoshi},
  journal= {arXiv preprint arXiv:0912.2782},
  year   = {2015}
}

Comments

5 pages, 4 figures, to be appear in Phys. Rev. B