We present an electron interferometer defined purely by electrostatic gating in an encapsulated bilayer graphene. This minimizes possible sample degradation introduced by conventional etching methods when preparing quantum devices. The device quality is demonstrated by observing Aharonov-Bohm (AB) oscillations with a period of h/e, h/2e, h/3e, and h/4e, witnessing a coherence length of many microns. The AB oscillations as well as the type of carriers (electrons or holes) are seamlessly tunable with gating. The coherence length longer than the ring perimeter and semiclassical trajectory of the carrier are established from the analysis of the temperature and magnetic field dependence of the oscillations. Our gate-defined ring geometry has the...
Quantum interference is observed in a graphene ring system via the Aharonov Bohm effect. As graphene...
Graphene provides a rich platform for the study of interaction-induced broken symmetry states due to...
We present transport measurements on high-mobility bilayer graphene fully encapsulated in hexagonal ...
Quantum confinement structures are building blocks of quantum devices in fundamental physics explora...
The charge and exchange statistics of an elementary excitation manifest in quantum coherent oscillat...
International audienceAbstract Over the past 20 years, many efforts have been made to understand and...
International audienceElectron interferometry with quantum Hall edge channels holds promise for prob...
Bernal-stacked bilayer graphene exhibits a wealth of interaction-driven phenomena, including robust ...
This thesis contains experimental studies on electronic transport properties of graphene with the Ah...
We investigate experimentally transport through ring-shaped devices etched in graphene and observe c...
Confined to a two-dimensional plane, electrons in a strong magnetic field travel along the edge in o...
This thesis focuses on the electrical transport characteristics of graphene nanostructures at low te...
DoctorIn low-dimensional mesoscopic systems, measurements of transport properties such as quantum co...
Aharonov-Bohm oscillations are observed in a graphene quantum ring with a topgate covering one arm o...
The advent of few-layer graphene has given rise to a new family of two-dimensional systems with emer...
Quantum interference is observed in a graphene ring system via the Aharonov Bohm effect. As graphene...
Graphene provides a rich platform for the study of interaction-induced broken symmetry states due to...
We present transport measurements on high-mobility bilayer graphene fully encapsulated in hexagonal ...
Quantum confinement structures are building blocks of quantum devices in fundamental physics explora...
The charge and exchange statistics of an elementary excitation manifest in quantum coherent oscillat...
International audienceAbstract Over the past 20 years, many efforts have been made to understand and...
International audienceElectron interferometry with quantum Hall edge channels holds promise for prob...
Bernal-stacked bilayer graphene exhibits a wealth of interaction-driven phenomena, including robust ...
This thesis contains experimental studies on electronic transport properties of graphene with the Ah...
We investigate experimentally transport through ring-shaped devices etched in graphene and observe c...
Confined to a two-dimensional plane, electrons in a strong magnetic field travel along the edge in o...
This thesis focuses on the electrical transport characteristics of graphene nanostructures at low te...
DoctorIn low-dimensional mesoscopic systems, measurements of transport properties such as quantum co...
Aharonov-Bohm oscillations are observed in a graphene quantum ring with a topgate covering one arm o...
The advent of few-layer graphene has given rise to a new family of two-dimensional systems with emer...
Quantum interference is observed in a graphene ring system via the Aharonov Bohm effect. As graphene...
Graphene provides a rich platform for the study of interaction-induced broken symmetry states due to...
We present transport measurements on high-mobility bilayer graphene fully encapsulated in hexagonal ...