The spatial distribution of the incompressible edge states (IES) is obtained for a geometry which is topologically equivalent to an electronic Mach-Zehnder interferometer, taking into account the electron-electron interactions within a Hartree type self-consistent model. The magnetic field dependence of these IES is investigated and it is found that an interference pattern may be observed if two IES merge or come very close, near the quantum point contacts. Our calculations demonstrate that, being in a quantized Hall plateau does not guarantee observing the interference behavior. © 2007 Elsevier B.V. All rights reserved
Recent experiments have shown that electronic Mach-Zehnder interferometers of unprecedented fideliti...
The influence of the incompressible strips on the integer quantized Hall effect (IQHE) is investigat...
Topological insulators are unique quantum states of matter. Although they behave like ordinary insul...
The spatial distribution of the incompressible edge states (IES) is obtained for a geometry which is...
This PhD thesis is devoted to the engineering of quantum coherence in the integer quantum Hall effec...
Electron interferometers based on Hall edge states (ESs) proved to be robust demonstrators of the c...
We study the visibility of Aharonov-Bohm interference in an electronic Mach-Zehnder interferometer i...
We realize a nanoscale-area Mach-Zehnder interferometer with co-propagating quantum Hall spin-resolv...
In this work we implement the self-consistent Thomas-Fermi-Poisson approach to a homogeneous two-dim...
We compute the exact single-particle time-resolved dynamics of electronic Mach–Zehnder interferomet...
We present a numerical study of a multichannel electronicMach-Zehnder interferometer, based onmagnet...
We develop a theoretical description of a Mach-Zehnder interferometer built from integer quantum Hal...
We investigate the temperature and voltage dependence of the quantum interference in an electronic M...
We study numerically a multichannel electronic Mach-Zender interferometer, where an orthogonal magne...
Confined to a two-dimensional plane, electrons in a strong magnetic field travel along the edge in o...
Recent experiments have shown that electronic Mach-Zehnder interferometers of unprecedented fideliti...
The influence of the incompressible strips on the integer quantized Hall effect (IQHE) is investigat...
Topological insulators are unique quantum states of matter. Although they behave like ordinary insul...
The spatial distribution of the incompressible edge states (IES) is obtained for a geometry which is...
This PhD thesis is devoted to the engineering of quantum coherence in the integer quantum Hall effec...
Electron interferometers based on Hall edge states (ESs) proved to be robust demonstrators of the c...
We study the visibility of Aharonov-Bohm interference in an electronic Mach-Zehnder interferometer i...
We realize a nanoscale-area Mach-Zehnder interferometer with co-propagating quantum Hall spin-resolv...
In this work we implement the self-consistent Thomas-Fermi-Poisson approach to a homogeneous two-dim...
We compute the exact single-particle time-resolved dynamics of electronic Mach–Zehnder interferomet...
We present a numerical study of a multichannel electronicMach-Zehnder interferometer, based onmagnet...
We develop a theoretical description of a Mach-Zehnder interferometer built from integer quantum Hal...
We investigate the temperature and voltage dependence of the quantum interference in an electronic M...
We study numerically a multichannel electronic Mach-Zender interferometer, where an orthogonal magne...
Confined to a two-dimensional plane, electrons in a strong magnetic field travel along the edge in o...
Recent experiments have shown that electronic Mach-Zehnder interferometers of unprecedented fideliti...
The influence of the incompressible strips on the integer quantized Hall effect (IQHE) is investigat...
Topological insulators are unique quantum states of matter. Although they behave like ordinary insul...