Emblems of pair density waves: dual identity of topological defects and their transport signatures
arXiv:2506.08087 · doi:10.1103/1gyj-r5fr
Abstract
The pair density wave (PDW) exemplifies intertwined orders in strongly correlated systems. A recent discovery of superconductivity in a quarter-metal state offers the first experimental system where a pure PDW without uniform superconductivity is suspected, offering a unique opportunity to examine the consequences of intertwined orders. A pure two-dimensional PDW supports an unusual fractional excitation as its topological defect (TD). A TD simultaneously winds the phase of the Cooper pair and distorts the amplitude modulation -- a dual role reflecting its intertwined character. As a vortex, a TD carries fractional vorticity of , whose movement would cause resistance. As a crystalline defect, a TD can be sourced by charge disorder in the system. We show that experimentally observed resistive switching can originate from mobile TDs, while a small magnetic field will restore zero resistance by blocking their motion. The resulting resistive state exhibits extreme anisotropy and a Hall response, with the Hall angle determined by the angle between the current and the TD's Burgers vector. These features will serve as confirmation of the dual identity of topological defects as emblems of PDW order.
4+6 pages, 4 figures
References in corpus (24)
- Charge superconductivity from pair density wave order in certain high temperature superconductors
- Dislocations and vortices in pair density wave superconductors
- Detection of a Pair Density Wave State in UTe
- Signatures of Chiral Superconductivity in Rhombohedral Graphene
- Chiral kagome superconductivity modulations with residual Fermi arcs in KV3Sb5 and CsV3Sb5
- Spatial symmetry constraint of charge-ordered kagome superconductor CsVSb
- Conjoined Charge Density Waves in the Kagome Superconductor CsV3Sb5
- Superconductivity and quantized anomalous Hall in rhombohedral graphene
- Pair-density-wave and chiral superconductivity in twisted bilayer transition-metal-dichalcogenides
- Topology of vibrational modes predict plastic events in glasses
- Topological chiral superconductivity beyond pairing in a Fermi liquid
- Intravalley spin-polarized superconductivity in rhombohedral tetralayer graphene
- Band Renormalization, Quarter Metals, and Chiral Superconductivity in Rhombohedral Tetralayer Graphene
- Visualizing the melting of the charge density wave in UTe2 by generation of pairs of topological defects with opposite winding
- Pair density wave and reentrant superconducting tendencies originating from valley polarization
- Multiple-q current states in a multicomponent superconducting channel
- Sublattice modulated superconductivity in the Kagome Hubbard model
- Self-consistent theory of pair density waves in kagome superconductors
- Intrinsic superconducting diode effect and nonreciprocal superconductivity in rhombohedral graphene multilayers
- Spontaneous vortex-antivortex lattice and Majorana fermions in rhombohedral graphene
- Quarter Metal Superconductivity
- Probing superconductivity with tunneling spectroscopy in rhombohedral graphene
- Electronic structure of topological defects in the pair density wave superconductor
- Nonreciprocal Current-Induced Zero-Resistance State in Valley-Polarized Superconductors