Probing the Spatial Homogeneity of Exfoliated HfTe 5 Films

In van der Waals materials, external strain is an effective tool to manipulate and control electronic responses by changing the electronic bands upon lattice deformation. In particular, the band gap of the layered transition metal pentatelluride HfTe is sufficiently small to be inverted by subtle ch...

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Veröffentlicht in:ACS nano 2024-07, Vol.18 (28), p.18327-18333
Hauptverfasser: Singh, Maanwinder P, Dong, Qingxin, Chen, Gen-Fu, Holleitner, Alexander W, Kastl, Christoph
Format: Artikel
Sprache:eng
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Zusammenfassung:In van der Waals materials, external strain is an effective tool to manipulate and control electronic responses by changing the electronic bands upon lattice deformation. In particular, the band gap of the layered transition metal pentatelluride HfTe is sufficiently small to be inverted by subtle changes of the lattice parameters resulting in a strain-tunable topological phase transition. In that case, knowledge about the spatial homogeneity of electronic properties becomes crucial, especially for the microfabricated thin film circuits used in typical transport measurements. Here, we reveal the homogeneity of exfoliated HfTe thin films by spatially resolved Raman microscopy. Comparing the Raman spectra under applied external strain to unstrained bulk references, we pinpoint local variations of Raman signatures to inhomogeneous strain profiles in the sample. Importantly, our results demonstrate that microfabricated contacts can act as sources of significant inhomogeneities. To mitigate the impact of unintentional strain and its corresponding modifications of the electronic structure, careful Raman microscopy constitutes a valuable tool for quantifying the homogeneity of HfTe films and circuits fabricated thereof.
ISSN:1936-0851
1936-086X
DOI:10.1021/acsnano.4c02081