Anyon colliders -- quantum Hall devices where dilute quasiparticle beams collide at a quantum point contact -- provide an interferometer-free probe of anyonic exchange phases through current cross correlations. Within a non-equilibrium bosonization framework, the normalized cross-correlations take a universal form depending only on the exchange phase and the dynamical exponent, enabling experimental demonstration of anyonic statistics. This result can be interpreted as time-domain interference -- braiding in time rather than spatial exclusion or real-space interferometry. Extension to hierarchical states shows that the semiclassical step-function description of quasiparticles fails at large statistical angles. Introducing a finite soliton width resolves this issue and enables quantitative modeling of charge-e/5 quasiparticle collisions.
@article{arxiv.2510.04319,
title = {Braids and Beams: Exploring Fractional Statistics with Mesoscopic Anyon Colliders},
author = {Bernd Rosenow and Bertrand I. Halperin},
journal= {arXiv preprint arXiv:2510.04319},
year = {2025}
}
Comments
10 pages, 3 figures, Frontiers of Science Award Proceedings; references added