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Bulk and surface electron scattering in disordered Bi₂Te₃ probed by quasiparticle interference

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arxiv 2409.04294 v1 pith:7TQCIRIV submitted 2024-09-06 cond-mat.mes-hall cond-mat.other

Bulk and surface electron scattering in disordered Bi$_{2}$Te$_{3}$ probed by quasiparticle interference

classification cond-mat.mes-hall cond-mat.other
keywords interferencequasiparticlescatteringbulkdatasurfacetopologicalelectronic
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

We investigated the electronic properties of the topological insulator Bi$_{2}$Te$_{3}$ by scanning tunneling microscopy and spectroscopy at low temperature. We obtained high-resolution quasiparticle interference data of the topological surface Dirac electrons at different energies. Spin-selective joint density of states calculations were performed for surface and bulk electronic states to interpret the observed quasiparticle interference data. The topological properties of our crystals are demonstrated by the absence of backscattering along with the linear energy dispersion of the dominant scattering vector. In addition, we detect non-dispersive scattering modes which we associate with bulk-surface scattering and, thus, allow an approximate identification of the bulk energy gap range based on our quasiparticle interference data. Measurements of differential conductance maps in magnetic fields up to 15 T have been carried out, but no strong modifications could be observed.

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