4.6 Article

Electron-phonon coupling of the Ti3Sb compound

期刊

JOURNAL OF APPLIED PHYSICS
卷 132, 期 7, 页码 -

出版社

AIP Publishing
DOI: 10.1063/5.0102137

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资金

  1. Directorate of Presidential Strategy and Budget of Turkey
  2. NRF of Korea
  3. [2019K12-149045]
  4. [2019R1A2C1010498]
  5. [2022R1I1A1A01069202]

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Using first-principles method, this study investigates various properties of the A15 superconductor Ti3Sb, including electronic, mechanical, phononic, superconducting, and topological properties. The results show that Ti3Sb is mechanically stable, has metallic band structures, strong electron-phonon coupling, and moderate superconductivity.
Using the first-principles method based on density functional theory, we investigate the electronic, mechanical, phononic, superconducting, and topological properties of the A15 superconductor Ti3Sb with/without the inclusion of spin-orbit coupling (SOC). We find that the calculated elastic constants satisfy the Born stability criteria and the ductile nature of Ti3Sb. The result of phonon calculations reveals that the P m 3 over bar n structure is dynamically stable. Sb atoms are dominated in the low-frequency region due to the mass difference between Ti and Sb from partial phonon calculations. Our electronic structure calculations show that Ti3Sb has metallic band structures with Ti- d bands near the Fermi energy. The electron-phonon coupling constant ( lambda ? 0.80) indicates that Ti3Sb has strong electron-phonon coupling. The critical temperature ( T-c(mu)? = 0.10) is found to be 6.24 and 6.56 K with and without the SOC effect, respectively. Due to Ti's relatively small SOC strength, we do not find evidence of non-trivial topology in contrast to Ta compounds such as Ta3Sb. Published under an exclusive license by AIP Publishing.

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