The present work introduces a new concept for magnetic resonance measurements in the GHz regime inside a scanning tunneling microscope. It is based on heterodyne detection in a spin-polarized tunneling barrier. The experimental requirements, including a new method to suppress transmission effects, are explained. Measurements on three model systems which were studied to validate the new technique are presented and compared to simulations
Zweidimensionale Ladungsträgersysteme, die u.a. in III/V Halbleiter-Heterostrukturen oder Graphen zu...
We demonstrate a technique of broadband spin torque ferromagnetic resonance (ST-FMR) with magnetic f...
Recent advances in improving the spectroscopic energy resolution in scanning tunneling microscopy (S...
The present work introduces a new concept for magnetic resonance measurements in the GHz regime insi...
The present work introduces a new concept for magnetic resonance measurements in the GHz regime insi...
We describe the first application to semiconductor heterostructures of a new microwave-frequency opt...
Expansion of the detection bandwidth of scanning tunneling microscopy (STM) up to several giga-hertz...
We used a homodyne detection to investigate the gyration of magnetic vortex cores in Fe islands on W...
We describe a low-temperature sample probe for the electrical detection of magnetic resonance in a r...
We present the design and implementation of a scanning probe microscope, which combines electrically...
We describe a low-temperature sample probe for the electrical detection of magnetic resonance in a r...
We describe a low-temperature sample probe for the electrical detection of magnetic resonance in a r...
In the last decade, detecting spin dynamics at the atomic scale has been enabled by combining techni...
In the last decade, detecting spin dynamics at the atomic scale has been enabled by combining techni...
In the last decade, detecting spin dynamics at the atomic scale has been enabled by combining techni...
Zweidimensionale Ladungsträgersysteme, die u.a. in III/V Halbleiter-Heterostrukturen oder Graphen zu...
We demonstrate a technique of broadband spin torque ferromagnetic resonance (ST-FMR) with magnetic f...
Recent advances in improving the spectroscopic energy resolution in scanning tunneling microscopy (S...
The present work introduces a new concept for magnetic resonance measurements in the GHz regime insi...
The present work introduces a new concept for magnetic resonance measurements in the GHz regime insi...
We describe the first application to semiconductor heterostructures of a new microwave-frequency opt...
Expansion of the detection bandwidth of scanning tunneling microscopy (STM) up to several giga-hertz...
We used a homodyne detection to investigate the gyration of magnetic vortex cores in Fe islands on W...
We describe a low-temperature sample probe for the electrical detection of magnetic resonance in a r...
We present the design and implementation of a scanning probe microscope, which combines electrically...
We describe a low-temperature sample probe for the electrical detection of magnetic resonance in a r...
We describe a low-temperature sample probe for the electrical detection of magnetic resonance in a r...
In the last decade, detecting spin dynamics at the atomic scale has been enabled by combining techni...
In the last decade, detecting spin dynamics at the atomic scale has been enabled by combining techni...
In the last decade, detecting spin dynamics at the atomic scale has been enabled by combining techni...
Zweidimensionale Ladungsträgersysteme, die u.a. in III/V Halbleiter-Heterostrukturen oder Graphen zu...
We demonstrate a technique of broadband spin torque ferromagnetic resonance (ST-FMR) with magnetic f...
Recent advances in improving the spectroscopic energy resolution in scanning tunneling microscopy (S...