Threshold features in transport through a 1D constriction

Abstract

Suppression of electron current I through a 1D channel of length L connecting two Fermi liquid reservoirs is studied taking into account the Umklapp electron-electron interaction induced by a periodic potential. This interaction causes Hubbard gaps EH for L ∞. In the perturbative regime where EH vc/L (vc: charge velocity), and for small deviations δ n of the electron density from its commensurate values - I/V can diverge with some exponent as voltage or temperature V,T decreases above Ec=max(vc/L,vc δ n), while it goes to zero below Ec. This results in a nonmonotonous behavior of the conductance.

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