Vestigial -wave charge- superconductivity from bidirectional pair density waves
Phys. Rev. B 113, 045121 – Published 12 January, 2026
DOI: https://doi.org/10.1103/7lbj-tzw3
Abstract
We analyze the leading vestigial instability due to the melting of a bidirectional pair-density-wave state in two dimensions. In a previous work by one of the authors, it was found that the interplay between pair-density-wave fluctuations with ordering momenta along the and directions can provide a strong attractive interaction for charge- superconductivity in the -wave channel. In this work, we go beyond the artificial large- mean-field theory previously adopted and compute the phase diagram by incorporating phase fluctuations of the pair-density-wave order parameters. By investigating the relevance of various topological defects, we show that the interaction in the -wave channel, together with the strong anisotropy of phase fluctuations around the pair-density-wave ordering momenta favors a vestigial charge- superconducting order at intermediate temperatures. By contrast, a competing charge-density-wave vestigial order does not develop, due to the suppression of its stiffness.