The coherent modulation of swift electron beams with strong laser fields has enabled the generation of attosecond electron pulses, opening up new research avenues in ultrafast science. Here we study a comparatively simple alternative, the production of electron pulse trains directly at the source. In our theory work, we show that sub-optical-cycle electron bursts induced by tunneling photoemission from a metal nanotip can retain the temporal fingerprint of their emission dynamics in a typical low-energy point-projection microscope setup. We find that strong acceleration by a static field, a short propagation distance and a sufficiently large optical cycle duration mitigate temporal smearing due to matter-wave dispersion. Our approach enable...
Metallic nanotips exhibit large electric field enhancements over an extremely broad bandwidth spanni...
The local extraction of electrons from metal nanotips is an essential component of both scanning tun...
Attosecond imaging with electron beams can access optical-field-driven electron dynamics in space an...
Attosecond science is based on electron dynamics driven by a strong optical electric field and has e...
Progress in ultrafast electron microscopy relies on the development of efficient laser-driven electr...
We study the interaction of swift electrons with laser and solids using a numerical approach, and sp...
Illuminating a nano-sized metallic tip with ultrashort laser pulses leads to the emission of electro...
We numerically investigate the suitability of photoexcited nanotips as a source of coherent femtosec...
Illuminating a nano-sized metallic tip with ultrashort laser pulses leads to the emission of electro...
We report photoelectron emission from the apex of a sharp gold nanotaper illuminated via grating cou...
We numerically investigate the properties of coherent femtosecond single electron wave packets photo...
We show that a field emission tip electron source that is triggered with a femtosecond laser pulse c...
Flat and nanostructured metal nano-tips driven by sub-10 fs pulses at an 80-MHz repetition rate serv...
We advance ultrafast electron microscopy from atomic motions into the domain of electron-dynamics. S...
We present a nano-scale photoelectron source, optimized for ultrashort pulse durations and well-suit...
Metallic nanotips exhibit large electric field enhancements over an extremely broad bandwidth spanni...
The local extraction of electrons from metal nanotips is an essential component of both scanning tun...
Attosecond imaging with electron beams can access optical-field-driven electron dynamics in space an...
Attosecond science is based on electron dynamics driven by a strong optical electric field and has e...
Progress in ultrafast electron microscopy relies on the development of efficient laser-driven electr...
We study the interaction of swift electrons with laser and solids using a numerical approach, and sp...
Illuminating a nano-sized metallic tip with ultrashort laser pulses leads to the emission of electro...
We numerically investigate the suitability of photoexcited nanotips as a source of coherent femtosec...
Illuminating a nano-sized metallic tip with ultrashort laser pulses leads to the emission of electro...
We report photoelectron emission from the apex of a sharp gold nanotaper illuminated via grating cou...
We numerically investigate the properties of coherent femtosecond single electron wave packets photo...
We show that a field emission tip electron source that is triggered with a femtosecond laser pulse c...
Flat and nanostructured metal nano-tips driven by sub-10 fs pulses at an 80-MHz repetition rate serv...
We advance ultrafast electron microscopy from atomic motions into the domain of electron-dynamics. S...
We present a nano-scale photoelectron source, optimized for ultrashort pulse durations and well-suit...
Metallic nanotips exhibit large electric field enhancements over an extremely broad bandwidth spanni...
The local extraction of electrons from metal nanotips is an essential component of both scanning tun...
Attosecond imaging with electron beams can access optical-field-driven electron dynamics in space an...