Self accelerating electron Airy beams
arXiv:1205.2112 · doi:10.1038/nature11840
Abstract
We report the first experimental generation and observation of Airy beams of free electrons. The electron Airy beams are generated by diffraction of electrons through a nanoscale hologram, that imprints a cubic phase modulation on the beams' transverse plane. We observed the spatial evolution dynamics of an arc-shaped, self accelerating and shape preserving electron Airy beams. We directly observed the ability of electrons to self-heal, restoring their original shape after passing an obstacle. This electromagnetic method opens up new avenues for steering electrons, like their photonic counterparts, since their wave packets can be imprinted with arbitrary shapes or trajectories. Furthermore, these beams can be easily manipulated using magnetic or electric potentials. It is also possible to efficiently self mix narrow beams having opposite signs of acceleration, hence obtaining a new type of electron interferometer.
References in corpus (1)
Cited by in corpus (117)
- Electromagnetic Force and Momentum
- Electromagnetic Angular Momentum
- Airy beams and accelerating waves: An overview of recent advances
- Theory and applications of free-electron vortex states
- Electron Beam Spectroscopy for Nanophotonics
- Probing the symmetry of the potential of localized surface plasmon resonances with phase-shaped electron beams
- Roadmap on structured waves
- Sculpturing the Electron Wave Function
- Arbitrary Bending Plasmonic Light Waves
- Airy wave packets accelerating in space-time
- Holographic generation of highly twisted electron beams
- Promises and challenges of high-energy vortex states collisions
- Light emission is fundamentally tied to the quantum coherence of the emitting particle
- Interaction of electron beams with optical nanostructures and metamaterials: From coherent photon sources towards shaping the wave function
- High-purity free-electron momentum states prepared by three-dimensional optical phase modulation
- Experimental demonstration of an electrostatic orbital angular momentum sorter for electrons
- Quantum Čerenkov Radiation: Spectral Cutoffs and the Role of Spin and Orbital Angular Momentum
- Free-space creation of ultralong anti-diffracting light beam with multiple energy oscillations adjusted using optical pen
- Transverse Electron Beam Shaping with Light
- Control of quantum electrodynamical processes by shaping electron wavepackets
- Coupled Airy breathers
- Scattering of wave packets with phases
- Creation of Optical Cat and GKP States Using Shaped Free Electrons
- Unveiling the orbital angular momentum and acceleration of electron beams
- Self-interfering wavepackets
- Multi-path multi-component self-accelerating beams through spectrum-engineered position mapping
- Creating Airy beams employing a transmissive spatial light modulator
- Efficient orbital angular momentum transfer between plasmons and free electrons
- Tailored high-contrast attosecond electron pulses for coherent excitation and scattering
- Born approximation for scattering of wave packets on atoms. I. Theoretical background for scattering of a wave packet on a potential field
- Three-dimensional Accelerating Electromagnetic Waves
- Shaping symmetric Airy beam through binary amplitude modulation for ultralong needle focus
- Relativistic vortex electrons: paraxial versus non-paraxial regimes
- The Schwinger Scattering of Twisted Neutrons by Nuclei
- Tailoring Accelerating Beams in Phase Space
- Parallel axis theorem for free-space electron wavefunctions
- Regeneration of Airy pulses in fiber-optic links with dispersion management of the two leading dispersion terms of opposite signs
- Super-oscillating Electron Wave Functions with Sub-diffraction Spots
- Shaping electron beams for the generation of innovative measurements in the (S)TEM
- Non-linear quantum effects in electromagnetic radiation of a vortex electron
- Generation of arbitrary complex quasi-non-diffracting optical patterns
- Prospects for versatile phase manipulation in the TEM: beyond aberration correction
- Nonlinear dynamics of Airy-Vortex 3D wave packets: Emission of vortex light waves
- Spatially entangled Airy photons
- Relativistic quantum-mechanical description of twisted paraxial electron and photon beams
- Ionization of Hydrogen by Electron Vortex Beam
- Effects of the transverse coherence length in relativistic collisions
- Interactions of solitons with positive and negative masses: Shuttle motion and co-acceleration
- Spatiotemporal single-photon Airy bullets
- Intrinsic multipole moments of the non-Gaussian wave packets
- Observation of Accelerating Wave Packets in Curved Space
- Nonparaxial accelerating Talbot effect
- Closed-form expressions for nonparaxial accelerating beams with pre-engineered trajectories
- Gaussian and Airy wave packets of massive particles with orbital angular momentum
- Generation of electron vortex beams with over 1000 orbital angular momentum quanta using a tuneable electrostatic spiral phase plate
- On the dynamics of Airy beams in nonlinear media with nonlinear losses
- Bohm potential is real and its effects are measurable
- Tail-free self-accelerating solitons and vortices
- Flat polarization-controlled cylindrical lens based on the Pancharatnam-Berry geometric phase
- Observation of optical de Broglie-Mackinnon wave packets
- Quantum Airy Photons
- Optical skyrmion lattices accelerating in free space
- Generation of Accelerating Waves in Smith-Purcell Radiation
- Towards a holographic approach to spherical aberration correction in scanning transmission electron microscopy
- 3D shaping of electron beams using amplitude masks
- Probing phase of a scattering amplitude beyond the plane-wave approximation
- Classical Characterization of quantum waves: Comparison between the caustic and the zeros of the Madelung-Bohm potential
- Dynamics of self-accelerating electron beams in a homogeneous magnetic field
- Projectile Transverse Momentum Controls Emission in Electron Vortex Ionization Collisions
- Non-Diffracting Electron Vortex Beams Balancing Their Electron-Electron Interactions
- 1D self-healing beams in integrated silicon photonics
- The interaction of Airy waves and solitons in the three-wave system
- Self-Accelerating Matter Waves
- Possibility to probe negative values of a Wigner function in scattering of a coherent superposition of electronic wave packets by atoms
- Lorentz-boost eigenmodes
- Exploring the dynamics of finite-energy Airy beams: A trajectory analysis perspective
- Robust and adjustable C-shaped vortex beams
- Coherent and incoherent nonparaxial self-accelerating Weber beams
- Two-dimensional solitons generated by the downconversion of Airy waves
- Propagation of light in linear and quadratic GRIN media: The Bohm potential
- Self-accelerating beam dynamics in the space fractional Schrödinger equation
- Quantum Nanophotonics with Energetic Particles:X-rays and Free Electrons
- Generation of \c{hi}2 solitons from the Airy wave through the parametric instability
- Quantum particles that behave as free classical particles
- Spectral Phase Effects in High-Order Above Threshold Ionization of Noble Gas Atoms
- Partially coherent Airy beams: A cross-spectral density approach
- Nondiffracting gravitational waves
- Controlling light emission with electron wave interference
- Singularities and internal rotational dynamics of electron beams
- Controllable nonlinear propagation of partially incoherent Airy beams
- Electron vortex beams for chirality probing at the nanoscale
- Self-acceleration in non-Hermitian Systems
- Self-accelerating Parabolic Cylinder Waves in 1-D
- Non-spreading matter-wave packets in a ring
- Simultaneous generation of high power, ultrafast 1D and 2D Airy beams and their frequency doubling characteristics
- Formation of nonlinear X-waves in condensed matter systems
- Control of Arrival Time using Structured Wave Packets
- Controlling electron projectile coherence effects using twisted electrons
- Elastic scattering of Airy electron packets on atoms
- Lossless Airy Surface Polaritons in a Metamaterial via Active Raman Gain
- Quantum scattering beyond the plane-wave approximation
- Universal Analytic Solution for the Quantum Transport of Structured Matter-Waves in Magnetic Optics
- On Wigner function of a vortex electron
- Imprinting the quantum statistics of photons on free electrons
- Nanostructured-membrane electron phase plates
- Finite-energy accelerating beam dynamics in wavelet-based representations
- Relativistic motion of an Airy wavepacket in a lattice potential
- Self-accelerating solitons
- Structured Quantum Projectiles
- On the asymptotic evolution of finite energy Airy wavefunctions
- Hybrid Airy Plasmons with Dynamically Steerable Trajectories
- Angular acceleration with twisted light
- The effective Hamiltonian which governs the propagation dynamics of nonspreading wave packets
- Relativistic Bessel Cylinders
- Shaping Long-lived Electron Wavepackets for Customizable Optical Spectra
- Quantum states interrogation using a pre-shaped free electron wavefunction
- Self-healing of non-Hermitian topological skin modes