We have investigated the orbital magnetization of tunable two-dimensional electron-systems (2DES) in GaAs/AIGaAs-heterostructures in the magnetic quantum limit using a high-sensitive superconducting susceptometer. In particular we have studied the magnetization at filling factor ν=1, where the 2DES forms the quantum Hall ferromagnet. We extract from our data that the orbital magnetic moment is strongly enhanced at low temperatures T by spin-dependent exchange effects. Temperature dependent measurements show that in addition correlation effects dominate the excited states of the many-body system
This paper theoretically investigates the orbital magnetization of electron-doped (n-type) semicondu...
We present a torque-magnetometry study of bilayer two-dimensional electron gases with different inte...
In a two-dimensional electron system the orbital effects of in-plane magnetic fields are commonly ne...
We have investigated the orbital magnetization of tunable two-dimensional electron-systems (2DES) in...
The thermodynamic equilibrium magnetization of two-dimensional electron systems, embedded in GaAs-(A...
We observe electron magnetism originating from fractional quantum Hall states in single-layered GaAs...
We review recent heat capacity and magnetotransport experiments on GaAs/AlGaAs heterostructures cont...
Published in the Physical Review BInternational audienceThe magnetoresistance of a low carrier densi...
We report on enhancements in the magnetization of two-dimensional electron systems in the quantum Ha...
We present studies on the low-temperature magnetization of a two-dimensional electron system (2DES) ...
We have used a torque magnetometer to measure de Haas-van Alphen oscillations in the magnetization o...
We report magnetotransport measurements on high-mobility two-dimensional electron systems (2DESs) c...
This thesis describes a study of the magnetization two-dimensional electron gases (2DEGs). To detect...
In this work, main properties of a two-dimensional electron gas formed in GaAs/AlGaAs heterostructur...
We study orbital magnetism of a degenerate electron gas in a number of two-dimensional integrable sy...
This paper theoretically investigates the orbital magnetization of electron-doped (n-type) semicondu...
We present a torque-magnetometry study of bilayer two-dimensional electron gases with different inte...
In a two-dimensional electron system the orbital effects of in-plane magnetic fields are commonly ne...
We have investigated the orbital magnetization of tunable two-dimensional electron-systems (2DES) in...
The thermodynamic equilibrium magnetization of two-dimensional electron systems, embedded in GaAs-(A...
We observe electron magnetism originating from fractional quantum Hall states in single-layered GaAs...
We review recent heat capacity and magnetotransport experiments on GaAs/AlGaAs heterostructures cont...
Published in the Physical Review BInternational audienceThe magnetoresistance of a low carrier densi...
We report on enhancements in the magnetization of two-dimensional electron systems in the quantum Ha...
We present studies on the low-temperature magnetization of a two-dimensional electron system (2DES) ...
We have used a torque magnetometer to measure de Haas-van Alphen oscillations in the magnetization o...
We report magnetotransport measurements on high-mobility two-dimensional electron systems (2DESs) c...
This thesis describes a study of the magnetization two-dimensional electron gases (2DEGs). To detect...
In this work, main properties of a two-dimensional electron gas formed in GaAs/AlGaAs heterostructur...
We study orbital magnetism of a degenerate electron gas in a number of two-dimensional integrable sy...
This paper theoretically investigates the orbital magnetization of electron-doped (n-type) semicondu...
We present a torque-magnetometry study of bilayer two-dimensional electron gases with different inte...
In a two-dimensional electron system the orbital effects of in-plane magnetic fields are commonly ne...