English

Interfacially enhanced superconductivity in Fe(Te,Se)/Bi4Te3 heterostructures

Superconductivity 2024-05-27 v1 Materials Science

Abstract

Realizing topological superconductivity by integrating high-transition-temperature (TCT_C) superconductors with topological insulators can open new paths for quantum computing applications. Here, we report a new approach for increasing the superconducting transition temperature (TConsetT_{C}^{onset}) by interfacing the unconventional superconductor Fe(Te,Se) with the topological insulator Bi-Te system in the low-Se doping regime, near where superconductivity vanishes in the bulk. The critical finding is that the TConsetT_{C}^{onset} of Fe(Te,Se) increases from nominally non-superconducting to as high as 12.5 K when Bi2Te3Bi_2Te_3 is replaced with the topological phase Bi4Te3Bi_4Te_3. Interfacing Fe(Te,Se) with Bi4Te3Bi_4Te_3 is also found to be critical for stabilizing superconductivity in monolayer films where TConsetT_{C}^{onset} can be as high as 6 K. Measurements of the electronic and crystalline structure of the Bi4Te3Bi_4Te_3 layer reveal that a large electron transfer, epitaxial strain, and novel chemical reduction processes are critical factors for the enhancement of superconductivity. This novel route for enhancing TCT_C in an important epitaxial system provides new insight on the nature of interfacial superconductivity and a platform to identify and utilize new electronic phases.

Keywords

Cite

@article{arxiv.2405.15654,
  title  = {Interfacially enhanced superconductivity in Fe(Te,Se)/Bi4Te3 heterostructures},
  author = {An-Hsi Chen and Qiangsheng Lu and Eitan Hershkovitz and Miguel L. Crespillo and Alessandro R. Mazza and Tyler Smith and T. Zac Ward and Gyula Eres and Shornam Gandhi and Meer Muhtasim Mahfuz and Vitalii Starchenko and Khalid Hattar and Joon Sue Lee and Honggyu Kim and Robert G. Moore and Matthew Brahlek},
  journal= {arXiv preprint arXiv:2405.15654},
  year   = {2024}
}

Comments

18 pages, 5 figures, accepted by Advanced Materials

R2 v1 2026-06-28T16:39:10.812Z