Signature of pressure-induced topological phase transition in ZrTe$_5
npj Quantum Mater. 2024, 9, 76 The layered van der Waals material ZrTe$_5$ is known as a candidate topological insulator (TI), however its topological phase and the relation with other properties such as an apparent Dirac semimetallic state is still a subject of debate. We employ a semiclassical mul...
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Zusammenfassung: | npj Quantum Mater. 2024, 9, 76 The layered van der Waals material ZrTe$_5$ is known as a candidate
topological insulator (TI), however its topological phase and the relation with
other properties such as an apparent Dirac semimetallic state is still a
subject of debate. We employ a semiclassical multicarrier transport (MCT) model
to analyze the magnetotransport of ZrTe$_5$ nanodevices at hydrostatic
pressures up to 2 GPa. The temperature dependence of the MCT results between 10
and 300 K is assessed in the context of thermal activation, and we obtain the
positions of conduction and valence band edges in the vicinity of the chemical
potential. We find evidence of the closing and re-opening of the band gap with
increasing pressure, which is consistent with a phase transition from weak to
strong TI. This matches expectations from ab initio band structure
calculations, as well as previous observations that CVT-grown ZrTe$_5$ is a
weak TI in ambient conditions. |
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DOI: | 10.48550/arxiv.2312.10223 |