Interference measurements of non-Abelian e/4 & Abelian e/2 quasiparticle braiding
arXiv:1905.10248 · doi:10.1103/PhysRevX.13.011028
Abstract
The quantum Hall states at filling factors and are expected to have Abelian charge quasiparticles and non-Abelian charge quasiparticles. The non-Abelian statistics of the latter has been predicted to display a striking interferometric signature, the even-odd effect. By measuring resistance oscillations as a function of magnetic field in Fabry-Pérot interferometers using new high purity heterostructures, we for the first time report experimental evidence for the non-Abelian nature of excitations at . At both and we also examine, for the first time, the fermion parity, a topological quantum number of an even number of non-Abelian quasiparticles. The phase of observed oscillations is reproducible and stable over long times (hours) near both filling factors, indicating stability of the fermion parity. At both fractions, when phase fluctuations are observed, they are predominantly phase flips, consistent with either fermion parity change or change in the number of the enclosed quasiparticles. We also examine lower-frequency oscillations attributable to Abelian interference processes in both states. Taken together, these results constitute new evidence for the non-Abelian nature of quasiparticles; the observed life-time of their combined fermion parity further strengthens the case for their utility for topological quantum computation.
Final version, nearly identical to the one published in Phys. Rev. X sans some questionable superficial changes insisted upon by the PRX editors and with Supplementary Materials included after the main text
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Cited by in corpus (12)
- Direct observation of anyonic braiding statistics at the =1/3 fractional quantum Hall state
- Non-Abelian Topological Order and Anyons on a Trapped-Ion Processor
- Accurately computing electronic properties of a quantum ring
- Simulating the dynamics of braiding of Majorana zero modes using an IBM quantum computer
- Impact of bulk-edge coupling on observation of anyonic braiding statistics in quantum Hall interferometers
- Anyons in Quantum Hall Interferometry
- Edge Probes of Topological Order
- Strongly coupled edge states in a graphene quantum Hall interferometer
- Topological phase transition between composite-fermion and Pfaffian daughter states near ν = 1/2 FQHS
- Aharonov-Bohm interference and the evolution of phase jumps in fractional quantum Hall Fabry-Perot interferometers based on bi-layer graphene
- Valley-tunable, even-denominator fractional quantum Hall state in the lowest Landau level of an anisotropic system
- Even-denominator fractional quantum Hall state in conventional triple-gated quantum point contact