We numerically investigate the properties of coherent femtosecond single electron wave packets photoemitted from nanotips in view of their application in ultrafast electron diffraction and non-destructive imaging with low-energy electrons. For two different geometries, we analyze the temporal and spatial broadening during propagation from the needle emitter to an anode, identifying the experimental parameters and challenges for realizing femtosecond time resolution. The simple tip-anode geometry is most versatile and allows for electron pulses of several ten of femtosecond duration using a very compact experimental design, however, providing very limited control over the electron beam collimation. A more sophisticated geometry comprising a ...
Ultrafast measurement technology provides essential contributions to our understanding of the proper...
Ultrafast electron microscopy and diffraction are powerful techniques for the study of the time-reso...
We present a nano-scale photoelectron source, optimized for ultrashort pulse durations and well-suit...
We numerically investigate the properties of coherent femtosecond single electron wave packets photo...
We numerically investigate the suitability of photoexcited nanotips as a source of coherent femtosec...
We numerically investigate the suitability of photoexcited nanotips as a source of coherent femtosec...
We numerically investigate the suitability of photoexcited nanotips as a source of coherent femtosec...
Pulsed electron beams allow for the direct atomic-scale observation of structures with femtosecond t...
Here, we describe the ‘‘temporal lens’’ concept that can be used for the focus and magnification of ...
The investigation of ultrafast electronic and structural dynamics in low-dimensional systems such as...
We describe the implementation and detailed characterization of a laser-triggered field-emitter elec...
AbstractPump–probe electron diffraction and ultrafast microscopy, based on laser excitation and prob...
Ultrafast electron diffraction allows the tracking of atomic motion in real time, but space charge e...
Recent developments in ultrafast electron microscopy have shown that spatial and temporal informatio...
Ultrafast electron microscopy and diffraction are powerful techniques for the study of the time-reso...
Ultrafast measurement technology provides essential contributions to our understanding of the proper...
Ultrafast electron microscopy and diffraction are powerful techniques for the study of the time-reso...
We present a nano-scale photoelectron source, optimized for ultrashort pulse durations and well-suit...
We numerically investigate the properties of coherent femtosecond single electron wave packets photo...
We numerically investigate the suitability of photoexcited nanotips as a source of coherent femtosec...
We numerically investigate the suitability of photoexcited nanotips as a source of coherent femtosec...
We numerically investigate the suitability of photoexcited nanotips as a source of coherent femtosec...
Pulsed electron beams allow for the direct atomic-scale observation of structures with femtosecond t...
Here, we describe the ‘‘temporal lens’’ concept that can be used for the focus and magnification of ...
The investigation of ultrafast electronic and structural dynamics in low-dimensional systems such as...
We describe the implementation and detailed characterization of a laser-triggered field-emitter elec...
AbstractPump–probe electron diffraction and ultrafast microscopy, based on laser excitation and prob...
Ultrafast electron diffraction allows the tracking of atomic motion in real time, but space charge e...
Recent developments in ultrafast electron microscopy have shown that spatial and temporal informatio...
Ultrafast electron microscopy and diffraction are powerful techniques for the study of the time-reso...
Ultrafast measurement technology provides essential contributions to our understanding of the proper...
Ultrafast electron microscopy and diffraction are powerful techniques for the study of the time-reso...
We present a nano-scale photoelectron source, optimized for ultrashort pulse durations and well-suit...