摘要
We theoretically study exotic superconducting phases in graphene-like single-sheet material BC3 doped to its type-II van Hove singularity whose saddle-point momenta are not time-reversal invariant. From combined renormalization group analysis and random-phase approximation calculations, we show that the dominant superconducting instability induced by weak repulsive interactions is in the time-reversal-invariant p+IP pairing channel because of the interplay among dominant ferromagnetic fluctuations, subleading spin fluctuations at finite momentum, and spin-orbit coupling. Such time-reversal-invariant p+IP superconductivity has nontrivial Z2 topological invariant. Our results show that doped BC3 provides a promising route to realizing a genuine two-dimensional helical p+IP superconductor.
源语言 | 英语 |
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文章编号 | 174503 |
期刊 | Physical Review B - Condensed Matter and Materials Physics |
卷 | 92 |
期 | 17 |
DOI | |
出版状态 | 已出版 - 2 11月 2015 |