BiTeI is a polar semiconductor with gigantic Rashba spin-split bands in bulk. We have investigated the effect of pressure on the electronic structure of this material via magnetotransport. Periods of Shubunikov–de Haas (SdH) oscillations originating from the spin-split outer Fermi surface and inner Fermi surface show disparate responses to pressure, while the carrier number derived from the Hall effect is unchanged with pressure. The associated parameters which characterize the spin-split band structure are strongly dependent on pressure, reflecting the pressure-induced band deformation. We find the SdH oscillations and transport response are consistent with the theoretically proposed pressure-induced band deformation leading to a topologic...
Transitions between topologically distinct electronic states have been predicted in different classe...
BiTeI is a giant Rashba spin splitting system, in which a noncentrosymmetric topological phase has r...
Narrow-gap semiconductors with strong spin-orbit coupling such as bismuth tellurohalides have become...
Abstract. We report measurements of Shubnikov-de Haas oscillations in the giant Rashba semiconductor...
Funding: UK EPSRC grants EP/P013686/1 and EP/R013004/1 (CDON and ADH) and the Royal Society (PDCK) a...
A pressure-induced topological quantum phase transition has been theoretically predicted for the sem...
Westudy the possibility of pressure-induced transitions from a normal semiconductor to a topological...
Interlocking between spin and the crystal momentum of electrons resulting from the spin-orbit coupli...
Being a giant bulk Rashba semiconductor, the ambient-pressure phase of BiTeI was predicted to transf...
We observe a giant spin-orbit splitting in the bulk and surface states of the noncentrosymmetric sem...
One of the most promising platforms for spintronics and topological quantum computation is the two-d...
International audienceIt was recently shown that BiTeI, a semiconductor with polar crystal structure...
One of the most promising platforms for spintronics and topological quantum computation is the two-d...
Starting from the three-dimensional Dirac semimetal in Na3Bi, we found a topological insulator (TI) ...
Being a giant bulk Rashba semiconductor, the ambient-pressure phase of BiTeI was predicted to transf...
Transitions between topologically distinct electronic states have been predicted in different classe...
BiTeI is a giant Rashba spin splitting system, in which a noncentrosymmetric topological phase has r...
Narrow-gap semiconductors with strong spin-orbit coupling such as bismuth tellurohalides have become...
Abstract. We report measurements of Shubnikov-de Haas oscillations in the giant Rashba semiconductor...
Funding: UK EPSRC grants EP/P013686/1 and EP/R013004/1 (CDON and ADH) and the Royal Society (PDCK) a...
A pressure-induced topological quantum phase transition has been theoretically predicted for the sem...
Westudy the possibility of pressure-induced transitions from a normal semiconductor to a topological...
Interlocking between spin and the crystal momentum of electrons resulting from the spin-orbit coupli...
Being a giant bulk Rashba semiconductor, the ambient-pressure phase of BiTeI was predicted to transf...
We observe a giant spin-orbit splitting in the bulk and surface states of the noncentrosymmetric sem...
One of the most promising platforms for spintronics and topological quantum computation is the two-d...
International audienceIt was recently shown that BiTeI, a semiconductor with polar crystal structure...
One of the most promising platforms for spintronics and topological quantum computation is the two-d...
Starting from the three-dimensional Dirac semimetal in Na3Bi, we found a topological insulator (TI) ...
Being a giant bulk Rashba semiconductor, the ambient-pressure phase of BiTeI was predicted to transf...
Transitions between topologically distinct electronic states have been predicted in different classe...
BiTeI is a giant Rashba spin splitting system, in which a noncentrosymmetric topological phase has r...
Narrow-gap semiconductors with strong spin-orbit coupling such as bismuth tellurohalides have become...