Spatio-temporal shaping of electron beams is a bold frontier in electron microscopy, enabling new routes toward spatial-resolution enhancement, selective probing, low-dose imaging and faster data acquisition. Over the last decade, shaping methods evolved from passive phase plates to low-speed electrostatic and magnetostatic displays. Recently, higher shaping speed and flexibility have become feasible by the advent of ultrafast electron microscopy, embodying a swift change of paradigm that relies on using light to control free electrons. Here, we experimentally demonstrate that arbitrary transverse modulation of electron beams is possible without the need for designing and fabricating complicated electron-optics elements or material nanostru...
Light is extensively used to steer the motion of atoms in free space, enabling cooling and trapping ...
The advent of nano-technology has made possible the manipulation of electron or light through nanost...
Electron beam shaping by sculpted thin films relies on electron–matter interactions and the wave nat...
Spatiotemporal electron-beam shaping is a bold frontier of electron microscopy. Over the past decade...
Spatial modulation of electron beams is an essential tool for various applications such as nanolitho...
Interfacing electrons and light enables ultrafast electron microscopy, quantum control of electrons,...
We exploit free-space interactions between electron beams and tailored light fields to imprint on-de...
Conventional electron microscopy operates with flat electron wave fronts. Employing attenuative or e...
Single-pixel imaging, originally developed in light optics, facilitates fast three-dimensional sampl...
Free electron beams such as those employed in electron microscopes have evolved into powerful tools ...
The past decade has witnessed a quantum revolution in the field of computation, communication and ma...
This upload includes the experimentally measured and theoretically calculated energy-filtered electr...
The ability to modulate free electrons with light has emerged as a powerful tool to produce attoseco...
The remarkable technological advancements that culminated in today's powerful electron microscope ha...
We demonstrate the generation and optical control of ultrashort high-coherence electron pulses. The ...
Light is extensively used to steer the motion of atoms in free space, enabling cooling and trapping ...
The advent of nano-technology has made possible the manipulation of electron or light through nanost...
Electron beam shaping by sculpted thin films relies on electron–matter interactions and the wave nat...
Spatiotemporal electron-beam shaping is a bold frontier of electron microscopy. Over the past decade...
Spatial modulation of electron beams is an essential tool for various applications such as nanolitho...
Interfacing electrons and light enables ultrafast electron microscopy, quantum control of electrons,...
We exploit free-space interactions between electron beams and tailored light fields to imprint on-de...
Conventional electron microscopy operates with flat electron wave fronts. Employing attenuative or e...
Single-pixel imaging, originally developed in light optics, facilitates fast three-dimensional sampl...
Free electron beams such as those employed in electron microscopes have evolved into powerful tools ...
The past decade has witnessed a quantum revolution in the field of computation, communication and ma...
This upload includes the experimentally measured and theoretically calculated energy-filtered electr...
The ability to modulate free electrons with light has emerged as a powerful tool to produce attoseco...
The remarkable technological advancements that culminated in today's powerful electron microscope ha...
We demonstrate the generation and optical control of ultrashort high-coherence electron pulses. The ...
Light is extensively used to steer the motion of atoms in free space, enabling cooling and trapping ...
The advent of nano-technology has made possible the manipulation of electron or light through nanost...
Electron beam shaping by sculpted thin films relies on electron–matter interactions and the wave nat...