Laser & Photonics Review · 2016 · 31 citations · 112 references
Optical MaterialsNew TechnologiesEngineeringLaser-plasma InteractionLaser PhysicsLaser ApplicationsElectron WavesElectron DiffractionHigh-power LasersLaser ControlElectron OpticOptical PropertiesLaser Plasma PhysicsNanophotonicsFree Electron LaserPhotonicsFree-electron LasersPhysicsRelativistic Laser-matter InteractionLight–matter InteractionX-ray Free-electron LaserLaser LightApplied PhysicsUltrafast Optics
Abstract In recent years laser light has been used to control the motion of electron waves. Electrons can now be diffracted by standing waves of light. Laser light in the vicinity of nanostructures is used to affect free electrons, for example, femto‐second and atto‐second laser‐induced electrons are emitted from nanotips delivering coherent fast electron sources. Optical control of dispersion of the emitted electron waves, and optically controlled femto‐second switches for ultrafast electron detection are proposed. The first steps towards electron accelerators and matter optics on‐a‐chip are now being taken. New research fields are driven by these new technologies. One example is the optical generation of electron pulses on‐demand and quantum degenerate pulses. Another is the emerging development of interaction free electron microscopy. This review will focus on the field of free electron quantum optics with technologies at the interplay of lasers, electron matter waves, and nanostructures. Questions that motivate their development will also be addressed. image
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Experimental quantum teleportation
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