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Incommensurate two-dimensional checkerboard charge density wave in the low-dimensional superconductor Ta4 Pd3 Te16

  • Zhenzhong Shi
  • , Stephen Kuhn
  • , Felix Flicker
  • , Toni Helm
  • , William Steinhardt
  • , Sachith Dissanayake
  • , Jooseop Lee
  • , David Graf
  • , Jacob Ruff
  • , Gilberto Fabbris
  • , D. Haskel
  • , S. Haravifard*
  • *Corresponding author for this work

Research output: Contribution to journalArticle (Academic Journal)peer-review

13 Citations (Scopus)

Abstract

We report the observation of a two-dimensional (2D) checkerboard charge density wave (CDW) in the low-dimensional superconductor Ta4⁢ Pd3 ⁢Te16. By determining its CDW properties across the temperature-pressure (𝑇 −𝑃) phase diagram and comparing with prototypical CDW materials, we conclude that Ta4⁢ Pd3 ⁢Te16 features (a) an incommensurate CDW with a mixed character of dimensions [quasi-1D (Q1D) considering its needlelike shape along the b axis, Q2D as the CDW has checkerboard wave vectors, and 3D because of CDW projections along all three axes], and (b) one of the weakest CDWs compared to its superconductivity (SC), i.e., enhanced SC with respect to CDW, suggesting an interesting interplay of the two orders.
Original languageEnglish
Article number042042(R)
Number of pages6
JournalPhysical Review Research
Volume2
Issue number4
DOIs
Publication statusPublished - 16 Dec 2020

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