Publikation: Evidence for a Strong Topological Insulator Phase in ZrTe5
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The complex electronic properties of $\mathrm{ZrTe_5}$ have recently stimulated in-depth investigations that assigned this material to either a topological insulator or a 3D Dirac semimetal phase. Here we report a comprehensive experimental and theoretical study of both electronic and structural properties of $\mathrm{ZrTe_5}$, revealing that the bulk material is a strong topological insulator (STI). By means of angle-resolved photoelectron spectroscopy, we identify at the top of the valence band both a surface and a bulk state. The dispersion of these bands is well captured by ab initio calculations for the STI case, for the specific interlayer distance measured in our x-ray diffraction study. Furthermore, these findings are supported by scanning tunneling spectroscopy revealing the metallic character of the sample surface, thus confirming the strong topological nature of $\mathrm{ZrTe_5}$.
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MANZONI, Giulia, Luca GRAGNANIELLO, G. AUTÈS, Timo KUHN, Andrea STERZI, Federico CILENTO, Michele ZACCHIGNA, Vivien Anna-Lena ENENKEL, Mikhail FONIN, Alberto CREPALDI, 2016. Evidence for a Strong Topological Insulator Phase in ZrTe5. In: Physical Review Letters. 2016, 117(23), 237601. ISSN 0031-9007. eISSN 1079-7114. Available under: doi: 10.1103/PhysRevLett.117.237601BibTex
@article{Manzoni2016Evide-37428, year={2016}, doi={10.1103/PhysRevLett.117.237601}, title={Evidence for a Strong Topological Insulator Phase in ZrTe<sub>5</sub>}, number={23}, volume={117}, issn={0031-9007}, journal={Physical Review Letters}, author={Manzoni, Giulia and Gragnaniello, Luca and Autès, G. and Kuhn, Timo and Sterzi, Andrea and Cilento, Federico and Zacchigna, Michele and Enenkel, Vivien Anna-Lena and Fonin, Mikhail and Crepaldi, Alberto}, note={Article Number: 237601} }
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