Channel Mixing and Spin transport in the Integer Quantum Hall Effect

Edge states are one-dimensional transport channels, emerging in quantum wells in the integer Quantum Hall regime, with remarkable properties of chirality and quantum coherence. In this thesis we present the idea of manipulating electronic currents mixed over two co-propagating edge channels, and discuss its potential impact for quantum interferometry and transport of spin-qubit states. We introduce the characteristics of edge states and evaluate the effect of local, non adiabatic potentials and their efficiency to transfer charge between two channels. We show that sharp potential variations whose energies are smaller than the Landau gap provide weak mixing, and we identify some experimental strategies that can achieve good mixing percentages. We develop numerical techniques of simulation to model existing experiments that employ mixed edge channels, and analytical methods in order to treat the effect of Coulomb interactions between edge states in a future spin-interferometry experiment.

Data and Resources

Additional Info

Field Value
Source https://theses.hal.science/tel-00680044
Author Venturelli, Davide
Maintainer CCSD
Last Updated May 24, 2026, 08:47 (UTC)
Created May 24, 2026, 08:47 (UTC)
Identifier NNT: 2011GRENY031
Language en
Rights https://about.hal.science/hal-authorisation-v1/
contributor Institut Néel (NEEL) ; Université Joseph Fourier - Grenoble 1 (UJF)-Institut polytechnique de Grenoble - Grenoble Institute of Technology (Grenoble INP)-Centre National de la Recherche Scientifique (CNRS)
creator Venturelli, Davide
date 2011-09-06T00:00:00
harvest_object_id 72402c63-678d-467a-bf36-821073abf986
harvest_source_id 3374d638-d20b-4672-ba96-a23232d55657
harvest_source_title test moissonnage SELUNE
metadata_modified 2026-04-08T00:00:00
set_spec type:THESE