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
In the last decade, detecting spin dynamics at the atomic scale has been enabled by combining techni...
We demonstrate a technique of broadband spin torque ferromagnetic resonance (ST-FMR) with magnetic f...
Expansion of the detection bandwidth of scanning tunneling microscopy (STM) up to several giga-hertz...
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 used a homodyne detection to investigate the gyration of magnetic vortex cores in Fe islands on W...
This thesis describes the design and performance of a newly developed high frequency scanning tunnel...
Electron spin resonance with a scanning tunneling microscope (ESR-STM) combines the high energy reso...
This thesis describes the design and performance of a newly developed high frequency scanning tunnel...
Electron spin resonance with a scanning tunneling microscope (ESR-STM) combines the high energy reso...
The work in this area is supported by Russian Science Foundation in the frames of project # 16-12-10...
In this work, magnetic atoms on surfaces are studied with low-temperature scanning tunneling microsc...
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...
In the last decade, detecting spin dynamics at the atomic scale has been enabled by combining techni...
We demonstrate a technique of broadband spin torque ferromagnetic resonance (ST-FMR) with magnetic f...
Expansion of the detection bandwidth of scanning tunneling microscopy (STM) up to several giga-hertz...
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 used a homodyne detection to investigate the gyration of magnetic vortex cores in Fe islands on W...
This thesis describes the design and performance of a newly developed high frequency scanning tunnel...
Electron spin resonance with a scanning tunneling microscope (ESR-STM) combines the high energy reso...
This thesis describes the design and performance of a newly developed high frequency scanning tunnel...
Electron spin resonance with a scanning tunneling microscope (ESR-STM) combines the high energy reso...
The work in this area is supported by Russian Science Foundation in the frames of project # 16-12-10...
In this work, magnetic atoms on surfaces are studied with low-temperature scanning tunneling microsc...
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...
In the last decade, detecting spin dynamics at the atomic scale has been enabled by combining techni...
We demonstrate a technique of broadband spin torque ferromagnetic resonance (ST-FMR) with magnetic f...
Expansion of the detection bandwidth of scanning tunneling microscopy (STM) up to several giga-hertz...