Physical Sciences and Engineering Division, KAUST, Thuwal 23955-6900, Kingdom of Saudi Arabia.
Sci Rep. 2014 Feb 7;4:4025. doi: 10.1038/srep04025.
Ab-initio calculations show a pressure induced trivial-nontrivial-trivial topological phase transition in the normal state of 1T-TiSe2. The pressure range in which the nontrivial phase emerges overlaps with that of the superconducting ground state. Thus, topological superconductivity can be induced in protected surface states by the proximity effect of superconducting bulk states. This kind of self-induced topological surface superconductivity is promising for a realization of Majorana fermions due to the absence of lattice and chemical potential mismatches. For appropriate electron doping, the formation of the topological superconducting surface state in 1T-TiSe2 becomes accessible to experiments as it can be controlled by pressure.
从头算表明,在 1T-TiSe2 的正常态中存在压力诱导的平凡-非平凡-平凡拓扑相变。出现非平凡相的压力范围与超导基态的压力范围重叠。因此,通过超导体的近邻效应可以在受保护的表面态中诱导拓扑超导性。由于不存在晶格和化学势失配,这种自诱导的拓扑表面超导性有望实现马约拉纳费米子。对于适当的电子掺杂,1T-TiSe2 中拓扑超导表面态的形成可以通过压力来控制,因此可以进行实验研究。