We study the electromagnetic response of nanostructures to single-cycle THz excitation by using ultrafast electron diffraction. Although the nanostructures themselves are static, there exist complex sub-THz-cycle Bragg spot dynamics that relate via time-dependent Aharonov-Bohm-like phase shifts to the nanoscale electromagnetic potentials
The confined electronic structure of nanoscale materials has increasingly been shown to induce behav...
Ultrafast high energy electron diffraction in reflection geometry is employed to study the structura...
For interaction of light with condensed-matter systems, we show with simulations that ultrafast elec...
We study the electromagnetic response of nanostructures to single-cycle THz excitation by using ultr...
Electron interferometry via phase-contrast microscopy, holography, or picodiffraction can provide a ...
We advance ultrafast electron microscopy from atomic motions into the domain of electron-dynamics. S...
Through combined three-dimensional electromagnetic and particle tracking simulations we demonstrate ...
Ultrafast measurement technology provides essential contributions to our understanding of the proper...
The development of ultrafast time-resolved techniques in the last decades allowed the direct observa...
The active control of matter by strong electromagnetic fields is of growing importance, with applica...
The recent development of femtosecond electron and x-ray techniques for diffraction and imaging allo...
Systems with ultrafast time-varying dielectric properties represent an emerging physical framework. ...
Phase-locked ultrashort pulses in the rich terahertz spectral range1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11...
Attosecond imaging with electron beams can access optical-field-driven electron dynamics in space an...
Time-resolved electron energy analysis and loss spectroscopy can reveal a wealth of information abou...
The confined electronic structure of nanoscale materials has increasingly been shown to induce behav...
Ultrafast high energy electron diffraction in reflection geometry is employed to study the structura...
For interaction of light with condensed-matter systems, we show with simulations that ultrafast elec...
We study the electromagnetic response of nanostructures to single-cycle THz excitation by using ultr...
Electron interferometry via phase-contrast microscopy, holography, or picodiffraction can provide a ...
We advance ultrafast electron microscopy from atomic motions into the domain of electron-dynamics. S...
Through combined three-dimensional electromagnetic and particle tracking simulations we demonstrate ...
Ultrafast measurement technology provides essential contributions to our understanding of the proper...
The development of ultrafast time-resolved techniques in the last decades allowed the direct observa...
The active control of matter by strong electromagnetic fields is of growing importance, with applica...
The recent development of femtosecond electron and x-ray techniques for diffraction and imaging allo...
Systems with ultrafast time-varying dielectric properties represent an emerging physical framework. ...
Phase-locked ultrashort pulses in the rich terahertz spectral range1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11...
Attosecond imaging with electron beams can access optical-field-driven electron dynamics in space an...
Time-resolved electron energy analysis and loss spectroscopy can reveal a wealth of information abou...
The confined electronic structure of nanoscale materials has increasingly been shown to induce behav...
Ultrafast high energy electron diffraction in reflection geometry is employed to study the structura...
For interaction of light with condensed-matter systems, we show with simulations that ultrafast elec...