We demonstrate the quantized transfer of photon energy and transverse momentum to a high-coherence electron beam. In an ultrafast transmission electron microscope, a three-dimensional phase modulation of the electron wave function is induced by transmitting the beam through a laser-illuminated thin graphite sheet. This all-optical free-electron phase space control results in high-purity superpositions of linear momentum states, providing an elementary component for optically programmable electron phase plates and beam splitters
Light-electron interaction is the seminal ingredient in free-electron lasers and dynamical investiga...
We observe Coulomb-correlated electron pair and triple states generated by femtosecond photoemission...
Ultrafast electron-photon spectroscopy in electron microscopes commonly requires ultrafast laser set...
We demonstrate the generation and optical control of ultrashort high-coherence electron pulses. The ...
Coherent manipulation of quantum systems with light is expected to be a cornerstone of future inform...
Quantum coherent evolution, interference between multiple distinct paths and phase-controlled sequen...
Ultrafast electron and X-ray imaging and spectroscopy are the basis for an ongoing revolution in the...
Quantum mechanics has revolutionized our understanding of the world that surrounds us. Quantum mecha...
Integrated photonics facilitates extensive control over fundamental light–matter interactions in man...
Free electron beams such as those employed in electron microscopes have evolved into powerful tools ...
We describe the implementation and detailed characterization of a laser-triggered field-emitter elec...
We present the development of the first ultrafast transmission electron microscope (UTEM) driven by ...
Ultrafast measurement technology provides essential contributions to our understanding of the proper...
We theoretically investigate the quantum-coherence properties of the cathodoluminescence (CL) emissi...
The past decade has witnessed a quantum revolution in the field of computation, communication and ma...
Light-electron interaction is the seminal ingredient in free-electron lasers and dynamical investiga...
We observe Coulomb-correlated electron pair and triple states generated by femtosecond photoemission...
Ultrafast electron-photon spectroscopy in electron microscopes commonly requires ultrafast laser set...
We demonstrate the generation and optical control of ultrashort high-coherence electron pulses. The ...
Coherent manipulation of quantum systems with light is expected to be a cornerstone of future inform...
Quantum coherent evolution, interference between multiple distinct paths and phase-controlled sequen...
Ultrafast electron and X-ray imaging and spectroscopy are the basis for an ongoing revolution in the...
Quantum mechanics has revolutionized our understanding of the world that surrounds us. Quantum mecha...
Integrated photonics facilitates extensive control over fundamental light–matter interactions in man...
Free electron beams such as those employed in electron microscopes have evolved into powerful tools ...
We describe the implementation and detailed characterization of a laser-triggered field-emitter elec...
We present the development of the first ultrafast transmission electron microscope (UTEM) driven by ...
Ultrafast measurement technology provides essential contributions to our understanding of the proper...
We theoretically investigate the quantum-coherence properties of the cathodoluminescence (CL) emissi...
The past decade has witnessed a quantum revolution in the field of computation, communication and ma...
Light-electron interaction is the seminal ingredient in free-electron lasers and dynamical investiga...
We observe Coulomb-correlated electron pair and triple states generated by femtosecond photoemission...
Ultrafast electron-photon spectroscopy in electron microscopes commonly requires ultrafast laser set...