arXiv · 0712.2655
Nernst effect in the phase-fluctuating superconductor InO$_x$
Abstract
We present a study of the Nernst effect in amorphous 2D superconductor InO$_x$, whose low carrier density implies low phase rigidity and strong superconducting phase fluctuations. Instead of presenting the abrupt jump expected at a BCS transition, the Nernst signal evolves continuously through the superconducting transition as previously observed in underdoped cuprates. This contrasts with the case of Nb$_{0.15}$Si$_{0.85}$, where the Nernst signal due to vortices below T$_{c}$ and by Gaussian fluctuations above are clearly distinct. The behavior of the ghost critical field in InO$_x$ points to a correlation length which does not diverge at $T_c$, a temperature below which the amplitude fluctuations freeze, but phase fluctuations survive.
Explore related subjects
Keep this discovery
P. Spathis, H. Aubin, A. Pourret, K. Behnia. 2007-12-17. Nernst effect in the phase-fluctuating superconductor InO$_x$. https://doi.org/10.1209/0295-5075/83/57005
Cite the original work for its findings. Save a collection to share your selection of sources.