arXiv · 2007.15228
Discovery of a Cooper-Pair Density Wave State in a Transition-Metal Dichalcogenide
Abstract
Pair density wave (PDW) states are defined by a spatially modulating superconductive order-parameter. To search for such states in transition metal dichalcogenides (TMD) we use high-speed atomic-resolution scanned Josephson-tunneling microscopy (SJTM). We detect a PDW state whose electron-pair density and energy-gap modulate spatially at the wavevectors of the preexisting charge density wave (CDW) state. The PDW couples linearly to both the s-wave superconductor and to the CDW, and exhibits commensurate domains with discommensuration phase-slips at the boundaries, conforming to those of the lattice-locked commensurate CDW. Nevertheless, we find a global $\delta\Phi \sim \pm2\pi/3$ phase difference between the PDW and CDW states, possibly owing to the Cooper-pair wavefunction orbital content. Our findings presage pervasive PDW physics in the many other TMDs that sustain both CDW and superconducting states.
Explore related subjects
Keep this discovery
Xiaolong Liu, Yi Xue Chong, Rahul Sharma, J. C. Séamus Davis. 2020-07-30. Discovery of a Cooper-Pair Density Wave State in a Transition-Metal Dichalcogenide. https://doi.org/10.1126/science.abd4607
Cite the original work for its findings. Save a collection to share your selection of sources.