Robust integer and fractional helical modes in the quantum Hall effect
arXiv:1709.03976 · doi:10.1038/s41567-017-0035-2
Abstract
Electronic systems harboring one dimensional helical modes, where the spin and momentum of the electron are locked, have lately become an important field of its own. When coupled to a conventional superconductor, such systems are expected to manifest topological superconductivity, a unique phase that gives rise to exotic Majorana zero modes. Even more interesting are fractional helical states which have not been observed before and which open the route for the realization of the generalized para fermions quasiparticles. Possessing non abelian exchange statistics, these quasiparticles may serve as building blocks in topological quantum computing. Here, we present a new approach to form protected one dimensional helical and fractional helical edge modes in the quantum Hall regime. The novel platform is based on a carefully designed double quantum well structure in a high mobility GaAs based system. In turn, the quantum well hosts two sub bands of 2D electrons, each tuned to the quantum Hall effect regime. By electrostatic gating of different areas of the structure, counter propagating integer, as well as fractional, edge modes, belonging to Landau levels with opposite spins are formed, rendering the modes helical. We demonstrate that due to spin protection, these helical modes remain ballistic, without observed mixing for large distances. In addition to the formation of helical modes, this new platform can be exploited as a rich playground for an artificial induction of compounded fractional edge modes, as well as construction of interferometers based on chiral edge modes.
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- Transport in helical Luttinger liquids in the fractional quantum Hall regime
- Parafermionic generalization of the topological Kondo effect
- Theory of Competing Charge Density Wave, Kekule and Antiferromagnetic ordered Fractional Quantum Hall states in Graphene aligned with Boron Nitride
- Emergence of Neutral Modes in Laughlin-like Fractional Quantum Hall Phases
- Realization of a Valley Superlattice
- Magnetic field dependent equilibration of fractional quantum Hall edge modes
- Coherent-Incoherent Crossover of Charge and Neutral Mode Transport as Evidence for the Disorder-Dominated Fractional Edge Phase
- Anomalous Magneto Optic Effects from an Antiferromagnet Topological-Insulator Heterostructure
- Superconducting correlations out of repulsive interactions on a fractional quantum Hall edge
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- Insulating regime of an underdamped current-biased Josephson junction supporting and parafermions
- Edge Reconstruction and Emergent Neutral Modes in Integer and Fractional Quantum Hall Phases
- Temperature dependent equilibration of spin orthogonal quantum Hall edge modes
- Drag conductance induced by neutral-mode localization in fractional quantum Hall junctions
- Edge reconstruction of compressible Quantum Hall fluid in the filling fraction range 1/3 to 2/3
- Superconductivity of neutral modes in quantum Hall edges