arXiv · cond-mat/0509171
In-Chain Tunneling Through Charge-Density Wave Nanoconstrictions and Break-Junctions
Abstract
We have fabricated longitudinal nanoconstrictions in the charge-density wave conductor (CDW) NbSe$_{3}$ using a focused ion beam and using a mechanically controlled break-junction technique. Conductance peaks are observed below the T$_{P1}$$=145 $K and T$_{P2}$$=59 $K CDW transitions, which correspond closely with previous values of the full CDW gaps $2Δ_{1}$ and $2Δ_{2}$ obtained from photo-emission. These results can be explained by assuming CDW-CDW tunneling in the presence of an energy gap corrugation $ε_{2}$ comparable to $Δ_{2}$, which eliminates expected peak at $Δ_{1}+Δ_{2}$. The nanometer length-scales our experiments imply indicate that an alternative explanation based on tunneling through back-to-back CDW-normal junctions is unlikely.
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K. O'Neill, E. Slot, R. E. Thorne, H. S. J. van der Zant. 2006-01-09. In-Chain Tunneling Through Charge-Density Wave Nanoconstrictions and Break-Junctions. https://doi.org/10.1103/physrevlett.96.096402
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