Two-particle time-domain interferometry in the Fractional Quantum Hall Effect regime
arXiv:2201.09553 · doi:10.1038/s41467-022-33603-3
Abstract
Quasi-particles are elementary excitations of condensed matter quantum phases. Demonstrating that they keep quantum coherence while propagating is a fundamental issue for their manipulation for quantum information tasks. Here, we consider anyons, the fractionally charged quasi-particles 20 of the Fractional Quantum Hall Effect occurring in two-dimensional electronic conductors in high magnetic fields. They obey anyonic statistics, intermediate between fermionic and bosonic. Surprisingly, anyons show large quantum coherence when transmitted through the localized states of electronic Fabry-Pérot interferometers, but almost no quantum interference when transmitted via the propagating states of Mach-Zehnder interferometers. Here, using a novel interferometric 25 approach, we demonstrate that anyons do keep quantum coherence while propagating. Performing two-particle time-domain interference measurements sensitive to the two-particle Hanbury Brown Twiss phase, we find 53% and 60% visibilities for anyons with charges e/5 and e/3. Our results give a positive message for the challenge of performing controlled quantum coherent braiding of anyons.
Main text and supplementary materials, 24 pages, 11 figures
References in corpus (14)
- Fractional statistics in anyon collisions
- Coherence and Indistinguishability of Single Electrons Emitted by Independent Sources
- Direct measurement of the coherence length of edge states in the Integer Quantum Hall Regime
- Shot noise of a mesoscopic two-particle collider
- Fractional charge and fractional statistics in the quantum Hall effects
- Real time decoherence of Landau and Levitov quasi-particles in quantum Hall edge channels
- Photon-assisted electron-hole shot noise in multi-terminal conductors
- Melting of interference in the fractional quantum Hall effect: Appearance of neutral modes
- Quantum coherence engineering in the integer quantum Hall regime
- Anyonic interference and braiding phase in a Mach-Zehnder Interferometer
- Impact of bulk-edge coupling on observation of anyonic braiding statistics in quantum Hall interferometers
- Anyons in Quantum Hall Interferometry
- Electron interferometry in quantum Hall regime: Aharonov-Bohm effect of interacting electrons
- Influence of channel mixing in fermionic Hong-Ou-Mandel experiments
Cited by in corpus (11)
- Emission and Coherent Control of Levitons in Graphene
- Andreev reflection of quantum Hall states through a quantum point contact
- Influence of channel mixing in fermionic Hong-Ou-Mandel experiments
- Ultrashort electron wavepackets via frequency-comb synthesis
- AC driven strongly correlated quantum circuits and Hall edge states: Unified photo-assisted noise and revisited minimal excitations
- Role of scaling dimensions in generalized noises in fractional quantum Hall tunneling due to a temperature bias
- Aharonov-Bohm Interference in Even-Denominator Fractional Quantum Hall States
- Exchange-phase erasure in anyonic Hong-Ou-Mandel interferometry
- Quantum transport phenomena induced by time-dependent fields
- Impact of Channel Mixing on the Visibility of Two-particle Interferometry in Quantum Hall Edge States
- Hanbury Brown and Twiss interference of electrons in free space from independent needle tip sources