In this Letter, we introduce conical-scanning dark-field imaging in four-dimensional (4D) ultrafast electron microscopy to visualize single-particle dynamics of a polycrystalline ensemble undergoing phase transitions. Specifically, the ultrafast metal-insulator phase transition of vanadium dioxide is induced using laser excitation and followed by taking electron-pulsed, time-resolved images and diffraction patterns. The single-particle selectivity is achieved by identifying the origin of all constituent Bragg spots on Debye-Scherrer rings from the ensemble. Orientation mapping and dynamic scattering simulation of the electron diffraction patterns in the monoclinic and tetragonal phase during the transition confirm the observed behavior of B...
With advances in spatial resolution reaching the atomic scale, two-dimensional (2D) and 3D imaging i...
The continuous electron beam of conventional scanning electron microscopes (SEM) limits the temporal...
Solid-state systems can host a variety of thermodynamic phases that can be controlled with magnetic ...
In this Letter, we introduce conical-scanning dark-field imaging in four-dimensional (4D) ultrafast ...
In this Letter, we introduce conical-scanning dark-field imaging in four-dimensional (4D) ultrafast ...
Four-dimensional (4D) imaging during structural changes are reported here using ultrafast electron m...
Imaging with ultrashort electron pulses allows visualizing atomic-scale motions in all four dimensi...
Complex systems in condensed phases involve a multidimensional energy landscape, and knowledge of tr...
The advancement of techniques that can probe the behaviour of individual nanoscopic objects is of pa...
As an energy filter in transmission electron microscopy has improved the precision of structural det...
Four-dimensional scanning transmission electron microscopy (4D-STEM) is a technique where a full two...
Time-resolved electron diffraction with atomic-scale spatial and temporal resolution was used to unr...
Four-dimensional scanning transmission electron microscopy (4D-STEM) is a technique where a full two...
The development of ultrafast time-resolved techniques in the last decades allowed the direct observa...
Understanding the ultrafast evolution of atomic and electronic rearrangements under nonequilibrium c...
With advances in spatial resolution reaching the atomic scale, two-dimensional (2D) and 3D imaging i...
The continuous electron beam of conventional scanning electron microscopes (SEM) limits the temporal...
Solid-state systems can host a variety of thermodynamic phases that can be controlled with magnetic ...
In this Letter, we introduce conical-scanning dark-field imaging in four-dimensional (4D) ultrafast ...
In this Letter, we introduce conical-scanning dark-field imaging in four-dimensional (4D) ultrafast ...
Four-dimensional (4D) imaging during structural changes are reported here using ultrafast electron m...
Imaging with ultrashort electron pulses allows visualizing atomic-scale motions in all four dimensi...
Complex systems in condensed phases involve a multidimensional energy landscape, and knowledge of tr...
The advancement of techniques that can probe the behaviour of individual nanoscopic objects is of pa...
As an energy filter in transmission electron microscopy has improved the precision of structural det...
Four-dimensional scanning transmission electron microscopy (4D-STEM) is a technique where a full two...
Time-resolved electron diffraction with atomic-scale spatial and temporal resolution was used to unr...
Four-dimensional scanning transmission electron microscopy (4D-STEM) is a technique where a full two...
The development of ultrafast time-resolved techniques in the last decades allowed the direct observa...
Understanding the ultrafast evolution of atomic and electronic rearrangements under nonequilibrium c...
With advances in spatial resolution reaching the atomic scale, two-dimensional (2D) and 3D imaging i...
The continuous electron beam of conventional scanning electron microscopes (SEM) limits the temporal...
Solid-state systems can host a variety of thermodynamic phases that can be controlled with magnetic ...