Magnetospectroscopy of two-dimensional HgTe-based topological insulators around the critical thickness - Laboratoire Charles Coulomb (L2C) Accéder directement au contenu
Article Dans Une Revue Physical Review B: Condensed Matter and Materials Physics (1998-2015) Année : 2012

Magnetospectroscopy of two-dimensional HgTe-based topological insulators around the critical thickness

Résumé

Recently, a new class of materials, so-called topological insulators, has emerged. These are systems characterized by the inversion of the electronic band structure and also by a certain strength of the spin-orbit interaction. HgTe/CdxHg1−xTe quantum wells represent a prominent example. They can change to the topological insulator phase from the conventional insulator phase when the thickness of the quantum well is increased over the critical thickness dc = 6.3 nm. Here, we report on a far-infrared magnetospectroscopy study of a set of HgTe/CdxHg1−xTe quantum wells with different thicknesses from below to above the critical value dc. In quantizing magnetic fields up to 16 T, both intraband and interband transitions have been clearly observed. In the widest quantum well with inverted band structure, we confirm the avoided crossing of the zero-mode Landau levels observed earlier in similar structures. In both noninverted quantum wells close to the critical thickness, we report unambiguously on the square root dependence of the transition energy on the magnetic field, as expected in the single-particle model of massless Dirac fermions. The obtained results are compared with the allowed transition energies between Landau levels in the valence and conduction bands calculated using the 8 × 8 Kane model.
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Dates et versions

hal-00767162 , version 1 (19-12-2012)

Identifiants

Citer

M. Zholudev, Frederic Teppe, M. Orlita, Christophe Consejo, J. Torres, et al.. Magnetospectroscopy of two-dimensional HgTe-based topological insulators around the critical thickness. Physical Review B: Condensed Matter and Materials Physics (1998-2015), 2012, 86, pp.205420. ⟨10.1103/PhysRevB.86.205420⟩. ⟨hal-00767162⟩
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