International audienceUltrafast control of matter by a strong electromagnetic field on the atomic scale is essential for future investigations and manipulations of ionization dynamics and excitation in solids. Coupling picosecond duration terahertz pulses to metallic nanostructures allows the generation of extremely localized and intense electric fields. Here, using single-cycle terahertz pulses, we demonstrate control over field ion emission from metallic nanotips. The terahertz near field is shown to induce an athermal ultrafast evaporation of surface atoms as ions on the subpicosecond time scale, with the tip acting as a field amplifier. The ultrafast terahertz-ion interaction offers unprecedented control over ultrashort free-ion pulses ...
The recent development of optical technology has enabled the practical use of a carrier-envelope pha...
The atome probe tomography is an instrument for analyzing matter in three dimensions with atomic res...
Combined with THz time-domain spectroscopy, THz near-field microscopy based on an atomic force micro...
International audienceUltrafast control of matter by a strong electromagnetic field on the atomic sc...
We present an experimental and numerical study of ion field evaporation from LaB _6 nanotips using s...
The active control of matter by strong electromagnetic fields is of growing importance, with applica...
This thesis has introduced a novel microscope which combines the outstanding properties of ultrafast...
The ability to directly image ultrafast phenomena with nanometer spatial resolution is essential to ...
The atom probe is an analysis technique based on the emission of ionized species from a needle-shape...
Laser terahertz emission microscopy (LTEM) has become a powerful tool for studying ultrafast dynamic...
Combined with terahertz (THz) time-domain spectroscopy, THz near-field microscopy based on an atomic...
We introduce ultraresolving terahertz (THz) near-field microscopy based on THz scattering at atomic ...
We demonstrate ultrafast terahertz (THz) field emission from a tungsten nanotip enabled by local fie...
Scanning probe techniques can leverage atomically precise forces to sculpt matter at surfaces, atom ...
Scanning tunneling microscopy combined with terahertz (THz) electromagnetic pulses and its related t...
The recent development of optical technology has enabled the practical use of a carrier-envelope pha...
The atome probe tomography is an instrument for analyzing matter in three dimensions with atomic res...
Combined with THz time-domain spectroscopy, THz near-field microscopy based on an atomic force micro...
International audienceUltrafast control of matter by a strong electromagnetic field on the atomic sc...
We present an experimental and numerical study of ion field evaporation from LaB _6 nanotips using s...
The active control of matter by strong electromagnetic fields is of growing importance, with applica...
This thesis has introduced a novel microscope which combines the outstanding properties of ultrafast...
The ability to directly image ultrafast phenomena with nanometer spatial resolution is essential to ...
The atom probe is an analysis technique based on the emission of ionized species from a needle-shape...
Laser terahertz emission microscopy (LTEM) has become a powerful tool for studying ultrafast dynamic...
Combined with terahertz (THz) time-domain spectroscopy, THz near-field microscopy based on an atomic...
We introduce ultraresolving terahertz (THz) near-field microscopy based on THz scattering at atomic ...
We demonstrate ultrafast terahertz (THz) field emission from a tungsten nanotip enabled by local fie...
Scanning probe techniques can leverage atomically precise forces to sculpt matter at surfaces, atom ...
Scanning tunneling microscopy combined with terahertz (THz) electromagnetic pulses and its related t...
The recent development of optical technology has enabled the practical use of a carrier-envelope pha...
The atome probe tomography is an instrument for analyzing matter in three dimensions with atomic res...
Combined with THz time-domain spectroscopy, THz near-field microscopy based on an atomic force micro...