In four-dimensional (4D) ultrafast electron microscopy (UEM), timed-pulse electron imaging and selected-area diffraction are used to study structural dynamics with space- and time-resolutions that allow direct observation of transformations affecting the fundamental properties of materials. Only recently, the UEM studies have begun to reveal a variety of dynamic responses of nanoscale specimens to material excitation, on ultrafast time scales and up to microseconds. Here, we give an account of some of these results, including imaging and diffraction dynamics of gold and graphite single crystal films, revealing atomic motions and morphology change in the former and two forms of acoustic resonance in the latter. We also report, for the first ...
The continuous electron beam of conventional scanning electron microscopes (SEM) limits the temporal...
Electron energy loss spectroscopy (EELS) is a powerful tool in the study of valency, bonding and str...
Chemical bonding dynamics are fundamental to the understanding of properties and behavior of materia...
In four-dimensional (4D) ultrafast electron microscopy (UEM), timed-pulse electron imaging and selec...
With advances in spatial resolution reaching the atomic scale, two-dimensional (2D) and 3D imaging i...
With advances in spatial resolution reaching the atomic scale, two-dimensional (2D) and 3D imaging i...
With four-dimensional (4D) electron microscopy, we report in situ imaging of the mechanical drumming...
The development of ultrafast time-resolved techniques in the last decades allowed the direct observa...
We report the development of 4D scanning transmission ultrafast electron microscopy (ST-UEM). The ...
We demonstrate ultrafast core-electron energy-loss spectroscopy in four-dimensional electron microsc...
Understanding the ultrafast evolution of atomic and electronic rearrangements under nonequilibrium c...
With advances in spatial resolution reaching the atomic scale, 2 and 3 dimensional (D) imaging in tr...
With advances in spatial resolution reaching the atomic scale, 2 and 3 dimensional (D) imaging in tr...
With advances in spatial resolution reaching the atomic scale, 2 and 3 dimensional (D) imaging in tr...
With advnaces in spatial resolution reaching the atomic scale, 2 and 3 dimensional (D) imaging in tr...
The continuous electron beam of conventional scanning electron microscopes (SEM) limits the temporal...
Electron energy loss spectroscopy (EELS) is a powerful tool in the study of valency, bonding and str...
Chemical bonding dynamics are fundamental to the understanding of properties and behavior of materia...
In four-dimensional (4D) ultrafast electron microscopy (UEM), timed-pulse electron imaging and selec...
With advances in spatial resolution reaching the atomic scale, two-dimensional (2D) and 3D imaging i...
With advances in spatial resolution reaching the atomic scale, two-dimensional (2D) and 3D imaging i...
With four-dimensional (4D) electron microscopy, we report in situ imaging of the mechanical drumming...
The development of ultrafast time-resolved techniques in the last decades allowed the direct observa...
We report the development of 4D scanning transmission ultrafast electron microscopy (ST-UEM). The ...
We demonstrate ultrafast core-electron energy-loss spectroscopy in four-dimensional electron microsc...
Understanding the ultrafast evolution of atomic and electronic rearrangements under nonequilibrium c...
With advances in spatial resolution reaching the atomic scale, 2 and 3 dimensional (D) imaging in tr...
With advances in spatial resolution reaching the atomic scale, 2 and 3 dimensional (D) imaging in tr...
With advances in spatial resolution reaching the atomic scale, 2 and 3 dimensional (D) imaging in tr...
With advnaces in spatial resolution reaching the atomic scale, 2 and 3 dimensional (D) imaging in tr...
The continuous electron beam of conventional scanning electron microscopes (SEM) limits the temporal...
Electron energy loss spectroscopy (EELS) is a powerful tool in the study of valency, bonding and str...
Chemical bonding dynamics are fundamental to the understanding of properties and behavior of materia...