High density two-dimensional Dirac fermion gas in HgTe quantum wells of critical width
Abstract
We report on magnetotransport and cyclotron resonance studies of 2D Dirac fermions in HgTe quantum wells with a near-critical thickness of 6.2 nm. By investigating carrier densities up to Ns = 5.6 × 1012 cm−2—nearly an order of magnitude higher than previously explored—we demonstrate that the energy spectrum remains strictly linear even at these elevated concentrations. Our findings reveal anomalous Shubnikov–de Haas oscillations at Ns = 2.9 × 1012 cm−2, likely stemming from scattering on remote impurities. Furthermore, we identify Ns≈ 5.6 × 1012 cm−2 as a fundamental density limit, which remains stable despite further doping increases up to (1–3) × 1013 cm−2.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (8)
E. B. Olshanetsky
Institute of Semiconductor Physics 1 , 630090 Novosibirsk,
Z. D. Kvon
M. L. Savchenko
Institute of Solid State Physics, Technische Universität Wien 3 , 1040 Vienna,
D. A. Khudaiberdiev
Institute of Solid State Physics, Technische Universität Wien 3 , 1040 Vienna,
P. Beck-Mannagetta
Institute of Solid State Physics, Technische Universität Wien 3 , 1040 Vienna,
A. A. Dobretsova
Institute of Semiconductor Physics 1 , 630090 Novosibirsk,
N. N. Mikhailov
A. Pimenov
Institute of Solid State Physics, Technische Universität Wien 3 , 1040 Vienna,