Quantum Coherent Multielectron Processes in an Atomic Scale Contact

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Abstract

The light emission from a scanning tunneling microscope operated on a Ag(111) surface at 6 K is analyzed from low conductances to values approaching the conductance quantum. Optical spectra recorded at sample voltages V reveal emission with photon energies hν>2eV. A model of electrons interacting coherently via a localized plasmon-polariton mode reproduces the experimental data, in particular, the kinks in the spectra at eV and 2eV as well as the scaling of the intensity at low and intermediate conductances.

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Peters, P. J., Xu, F., Kaasbjerg, K., Rastelli, G., Belzig, W., & Berndt, R. (2017). Quantum Coherent Multielectron Processes in an Atomic Scale Contact. Physical Review Letters, 119(6). https://doi.org/10.1103/PhysRevLett.119.066803

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