Light is extensively used to steer the motion of atoms in free space, enabling cooling and trapping of matter waves through ponderomotive forces and Doppler-mediated photon scattering. Likewise, light interaction with free electrons has recently emerged as a versatile approach to modulate the electron wave function for applications in ultrafast electron microscopy. Here, we combine these two worlds by theoretically demonstrating that matter waves can be optically manipulated via inelastic interactions with optical fields, allowing us to modulate the translational wave function and produce temporally and spatially compressed atomic beam pulses. Specifically, we realize such modulation through stimulated photon absorption and emission by atom...
Light-electron interaction is the seminal ingredient in free-electron lasers and dynamical investiga...
Interactions between electrons and photons are a source of rich physics from atomic to astronomical ...
Coherent manipulation of quantum systems with light is expected to be a cornerstone of future inform...
We exploit free-space interactions between electron beams and tailored light fields to imprint on-de...
In recent years laser light has been used to control the motion of electron waves. Electrons can now...
The past decade has witnessed a quantum revolution in the field of computation, communication and ma...
In recent years, significant progress has been achieved in manipulating matter with light, and light...
Free electron beams such as those employed in electron microscopes have evolved into powerful tools ...
Spatio-temporal shaping of electron beams is a bold frontier in electron microscopy, enabling new ro...
Spontaneous processes triggered in a sample by free electrons are commonly regarded as incoherent, a...
Free-electron beams are versatile probes of microscopic structure and composition1,2, and have revol...
Spatial modulation of electron beams is an essential tool for various applications such as nanolitho...
Spontaneous processes triggered in a sample by free electrons, such as cathodoluminescence, are comm...
The advent of nano-technology has made possible the manipulation of electron or light through nanost...
Electron interferometry via phase-contrast microscopy, holography, or picodiffraction can provide a ...
Light-electron interaction is the seminal ingredient in free-electron lasers and dynamical investiga...
Interactions between electrons and photons are a source of rich physics from atomic to astronomical ...
Coherent manipulation of quantum systems with light is expected to be a cornerstone of future inform...
We exploit free-space interactions between electron beams and tailored light fields to imprint on-de...
In recent years laser light has been used to control the motion of electron waves. Electrons can now...
The past decade has witnessed a quantum revolution in the field of computation, communication and ma...
In recent years, significant progress has been achieved in manipulating matter with light, and light...
Free electron beams such as those employed in electron microscopes have evolved into powerful tools ...
Spatio-temporal shaping of electron beams is a bold frontier in electron microscopy, enabling new ro...
Spontaneous processes triggered in a sample by free electrons are commonly regarded as incoherent, a...
Free-electron beams are versatile probes of microscopic structure and composition1,2, and have revol...
Spatial modulation of electron beams is an essential tool for various applications such as nanolitho...
Spontaneous processes triggered in a sample by free electrons, such as cathodoluminescence, are comm...
The advent of nano-technology has made possible the manipulation of electron or light through nanost...
Electron interferometry via phase-contrast microscopy, holography, or picodiffraction can provide a ...
Light-electron interaction is the seminal ingredient in free-electron lasers and dynamical investiga...
Interactions between electrons and photons are a source of rich physics from atomic to astronomical ...
Coherent manipulation of quantum systems with light is expected to be a cornerstone of future inform...