Miscibility relations in AV<sub>3</sub>Sb<sub>5</sub> kagome superconductors; properties of single crystal (K,Rb,Cs)V<sub>3</sub>Sb<sub>5</sub> alloys and dopants

ORAL

Abstract

Chemical tuning, either through alloying or doping, are fundamental ways to probe key structure-property relationships in complex materials. Here we investigate both alloying and doping in the AV3Sb5 kagome superconductors (A: K, Rb, Cs). We demonstrate full miscibility on the alkali site in powders, highlighting that the entire (K,Rb,Cs)V3Sb5 chemical space exists and further demonstrate our methods for growing (K,Rb,Cs)V3Sb5 single crystal alloys. Nonlinear changes in the charge density wave and superconducting temperature are tracked as a function of alkali composition. Analogous comparisons are made for our doped single crystals as a function of both n-type (Te, Cr) and p-type (Sn, Ti) dopants.

*US Department of Energy, Office of Basic Energy Sciences, Grant SC0017752National Science Foundation, DMR-1720256

Publication: Complete miscibility within the AV3Sb5 kagome superconductors; design of single crystal alloys (K,Rb,Cs)V3Sb5
Survey of n-type dopants in CsV3Sb5 kagome superconductor

Presenters

  • Brenden Ortiz

    • University of California, Santa Barbara

Authors

  • Brenden Ortiz

    • University of California, Santa Barbara
  • Andrea Capa-Salinas

    • University of California Santa Barbara
  • Paul M Sarte

    • University of California, Santa Barbara
  • Ganesh Pokahrel

    • University of California Santa Barbara
  • Yuzki Oey

    • University of California Santa Barbara
  • Miles Knudtson

    • University of California Santa Barbara
  • Stephen D Wilson

    • University of California, Santa Barbara
  • Ram Seshadri

    • University of California, Santa Barbara
  • Farnaz Kaboudvand

    • University of California Santa Barbara