arXiv · 1809.08068
Phase Slips and Parity Jumps in Quantum Oscillations of Inverted InAs/GaSb Quantum Wells
Abstract
We present magnetotransport measurements of a strongly hybridized inverted InAs/GaSb double quantum well. We find that the spin-orbit interaction leads to an appreciable spin-splitting of hole-like states, which form distinct Landau levels in a perpendicular magnetic field. The resulting quantum Hall state is governed by a periodic even and odd total filling arising due to the simultaneous occupation of electron-like and hole-like Landau levels of differing degeneracy. Furthermore, oscillatory charge transfer between all involved subbands leads to discrete phase slips in the usual sequential filling of Landau levels, and coincidentally the phase slips are close to $π$. These results shed new insights on the Landau level structure in composite systems and have consequences for interpreting intercepts obtained from index plots, which are routinely employed to investigate the presence of Berry's phase.
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Matija Karalic, Christopher Mittag, Susanne Mueller, Thomas Tschirky, Werner Wegscheider, Leonid Glazman, Klaus Ensslin, Thomas Ihn. 2018-09-21. Phase Slips and Parity Jumps in Quantum Oscillations of Inverted InAs/GaSb Quantum Wells. https://doi.org/10.1103/physrevb.99.201402
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