The recent development of optical technology has enabled the practical use of a carrier-envelope phase-controlled monocycle electric field in the terahertz (THz) regime. By combining this technique with metal nanostructures such as nanotips, which induce near-field enhancement, the development of novel applications is anticipated. In particular, THz scanning tunneling microscopy (THz-STM) is a promising technique for probing ultrafast dynamics with the spatial resolution of STM. However, the modulation of the THz waveform is generally accompanied by an enhancement of the electric field, which is unknown in actual measurement environments. Here, we present a method enabling direct evaluation of the enhanced near field in the tunnel junction ...
Watching a single molecule move on its intrinsic timescale has been one of the central goals of mode...
Terahertz spectroscopy is a powerful and contactless technique that enables to measure charge carrie...
International audienceThe interaction of monocycle terahertz (THz) fields with metal nanostructures ...
Light-field-driven processes occurring under conditions far beyond the diffraction limit of the ligh...
By utilizing terahertz scanning tunneling microscopy (THz-STM) with a carrier envelope phase shifter...
Scanning tunneling microscopy combined with terahertz (THz) electromagnetic pulses and its related t...
The ability to directly image ultrafast phenomena with nanometer spatial resolution is essential to ...
The fundamental understanding of quantum dynamics in advanced materials requires precise characteriz...
Coupling phase-stable single-cycle terahertz (THz) pulses to scanning tunneling microscope (STM) jun...
We demonstrate ultrafast terahertz (THz) field emission from a tungsten nanotip enabled by local fie...
This thesis has introduced a novel microscope which combines the outstanding properties of ultrafast...
The active control of matter by strong electromagnetic fields is of growing importance, with applica...
Tunnelling is one of the most fundamental manifestations of quantum mechanics. The recent advent of ...
We introduce ultraresolving terahertz (THz) near-field microscopy based on THz scattering at atomic ...
The main goal of the studies presented in this dissertation is to demonstrate the measurement and ma...
Watching a single molecule move on its intrinsic timescale has been one of the central goals of mode...
Terahertz spectroscopy is a powerful and contactless technique that enables to measure charge carrie...
International audienceThe interaction of monocycle terahertz (THz) fields with metal nanostructures ...
Light-field-driven processes occurring under conditions far beyond the diffraction limit of the ligh...
By utilizing terahertz scanning tunneling microscopy (THz-STM) with a carrier envelope phase shifter...
Scanning tunneling microscopy combined with terahertz (THz) electromagnetic pulses and its related t...
The ability to directly image ultrafast phenomena with nanometer spatial resolution is essential to ...
The fundamental understanding of quantum dynamics in advanced materials requires precise characteriz...
Coupling phase-stable single-cycle terahertz (THz) pulses to scanning tunneling microscope (STM) jun...
We demonstrate ultrafast terahertz (THz) field emission from a tungsten nanotip enabled by local fie...
This thesis has introduced a novel microscope which combines the outstanding properties of ultrafast...
The active control of matter by strong electromagnetic fields is of growing importance, with applica...
Tunnelling is one of the most fundamental manifestations of quantum mechanics. The recent advent of ...
We introduce ultraresolving terahertz (THz) near-field microscopy based on THz scattering at atomic ...
The main goal of the studies presented in this dissertation is to demonstrate the measurement and ma...
Watching a single molecule move on its intrinsic timescale has been one of the central goals of mode...
Terahertz spectroscopy is a powerful and contactless technique that enables to measure charge carrie...
International audienceThe interaction of monocycle terahertz (THz) fields with metal nanostructures ...