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Evolution of charge correlations in the hole-doped kagome superconductor CsV3−𝑥⁢Ti𝑥⁢Sb5

Journal Article · · Physical Review Materials
DOI:https://doi.org/10.1103/gv69-1lyj· OSTI ID:3005529
The interplay between superconductivity and charge correlations in the kagome metal CsV3⁢Sb5 can be tuned by external perturbations such as doping or pressure. Here we present a study of charge correlations and superconductivity upon hole doping via Ti substitution on the V kagome sites in CsV3−𝑥⁢Ti𝑥⁢Sb5 via synchrotron x-ray diffraction and scanning superconducting quantum interference device measurements. While the superconducting phase, as viewed via the vortex structure, remains conventional and unchanged across the phase diagram, the nature of charge correlations evolves as a function of hole doping from the first superconducting dome into the second superconducting dome. For Ti doping in the first superconducting dome, competing 2×2×2 and 2×2×4 supercells form within the charge density wave state and are suppressed rapidly with carrier substitution. In the second superconducting dome, no charge correlations are detected. Here, comparing these results to those observed for CsV3⁢Sb5−𝑥⁢Sn𝑥 suggests important differences between hole doping via chemical substitution on the V and Sb sites, particularly in the disorder potential associated with each dopant.
Research Organization:
University of California, Santa Barbara, CA (United States)
Sponsoring Organization:
National Science Foundation (NSF); USDOE Office of Science (SC), Basic Energy Sciences (BES). Materials Sciences & Engineering Division (MSE)
Grant/Contract Number:
SC0020305
Other Award/Contract Number:
DMR-2342336
DMR-1906325
DMR-2308708
OSTI ID:
3005529
Journal Information:
Physical Review Materials, Journal Name: Physical Review Materials Journal Issue: 9 Vol. 9; ISSN 2475-9953
Publisher:
American Physical Society (APS)Copyright Statement
Country of Publication:
United States
Language:
English

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