Terahertz-driven linear electron acceleration
arXiv:1411.4709 · doi:10.1038/ncomms9486
Abstract
The cost, size and availability of electron accelerators is dominated by the achievable accelerating gradient. Conventional high-brightness radio-frequency (RF) accelerating structures operate with 30-50 MeV/m gradients. Electron accelerators driven with optical or infrared sources have demonstrated accelerating gradients orders of magnitude above that achievable with conventional RF structures. However, laser-driven wakefield accelerators require intense femtosecond sources and direct laser-driven accelerators and suffer from low bunch charge, sub-micron tolerances and sub-femtosecond timing requirements due to the short wavelength of operation. Here, we demonstrate the first linear acceleration of electrons with keV energy gain using optically-generated terahertz (THz) pulses. THz-driven accelerating structures enable high-gradient electron or proton accelerators with simple accelerating structures, high repetition rates and significant charge per bunch. Increasing the operational frequency of accelerators into the THz band allows for greatly increased accelerating gradients due to reduced complications with respect to breakdown and pulsed heating. Electric fields in the GV/m range have been achieved in the THz frequency band using all optical methods. With recent advances in the generation of THz pulses via optical rectification of slightly sub-picosecond pulses, in particular improvements in conversion efficiency and multi-cycle pulses, increasing accelerating gradients by two orders of magnitude over conventional linear accelerators (LINACs) has become a possibility. These ultra-compact THz accelerators with extremely short electron bunches hold great potential to have a transformative impact for free electron lasers, future linear particle colliders, ultra-fast electron diffraction, x-ray science, and medical therapy with x-rays and electron beams.
References in corpus (1)
Cited by in corpus (65)
- Segmented Terahertz Electron Accelerator and Manipulator (STEAM)
- 300 GHz wave with attosecond-level timing noise
- Spectral Phase Control of Interfering Chirped Pulses for High-Energy Narrowband Terahertz Generation
- THz pulses over 50 millijoules generated from relativistic picosecond laser-plasma interactions
- High-temporal-resolution electron microscopy for imaging ultrafast electron dynamics
- Acceleration of relativistic beams using laser-generated terahertz pulses
- THz-Frequency Spin-Hall Auto-Oscillator Based on a Canted Antiferromagnet
- Femtosecond compression dynamics and timing jitter suppression in a terahertz-driven electron bunch compressor
- Relativistic electron beam acceleration in a zero-slippage terahertz-driven Inverse Free Electron Laser scheme
- Pulse Sequences for Efficient Multi-Cycle Terahertz Generation in Periodically Poled Lithium Niobate
- Terahertz-driven, all-optical electron gun
- Terahertz-based attosecond metrology of relativistic electron beams
- Femtosecond relativistic electron beam with reduced timing jitter from THz-driven beam compression
- Intense THz source based on BNA organic crystal pumped at Ti:Sapphire wavelength
- Cascaded high-gradient terahertz-driven acceleration of relativistic electron beams
- Stable and scalable multistage terahertz-driven particle accelerator
- High-purity free-electron momentum states prepared by three-dimensional optical phase modulation
- Short Electron Bunch Generation Using Single-Cycle Ultrafast Electron Guns
- Attosecond Control of Electron Beams at Dielectric and Absorbing Membranes
- Terahertz oscilloscope for recording time information of ultrashort electron beams
- Cascaded Parametric Amplification for Highly Efficient Terahertz Generation
- Cascaded Multi-cycle terahertz driven ultrafast electron acceleration and manipulation
- Toward a terahertz-driven electron gun
- Highly efficient narrowband terahertz generation driven by a two-spectral-line laser in PPLN
- Generation of High-Power, Tunable Terahertz Radiation from Laser Interaction with a Relativistic Electron Beam
- Demonstration of sub-luminal propagation of single-cycle terahertz pulses for particle acceleration
- THz generation from relativistic plasmas driven by near- to far-infrared laser pulses
- Fiber laser-driven gas plasma-based generation of THz radiation with 50-mW average power
- Powerful laser-produced quasi-half-cycle THz pulses
- Multicycle terahertz pulse generation by optical rectification in LiNbO, LiTaO, and BBO crystals
- High Efficiency Terahertz Generation in a Multi-Stage System
- Status and Objectives of the Dedicated Accelerator R&D Facility "SINBAD" at DESY
- Extreme Lightwave Electron Field Emission from a Nanotip
- Coherently controlled generation of single-cycle terahertz pulses from thin layer of nonlinear medium with low-frequency resonances
- Parallel-Plate Waveguides for Terahertz-Driven MeV Electron Bunch Compression
- Ab Initio calculation of field emission from metal surfaces with atomic--scale defects
- Phase space manipulation of free-electron pulses from metal nanotips using combined THz near-fields and external biasing
- Analysis of terahertz generation using tilted-pulse-fronts
- Electron-Terahertz Interaction in Dielectric-Lined Waveguide Structures for Electron Manipulation
- Principal frequency of an ultrashort laser pulse
- MITHRA 1.0: A full-wave simulation tool for Free Electron Lasers
- Generating compressed broadband terahertz pulses using aperiodically poled electro-optic crystals
- Tracking with wakefields in dielectric laser acceleration grating structures
- Terahertz-induced cascaded interactions between spectra offset by large frequencies
- Simulations on a potential hybrid and compact attosecond X-ray source based on RF and THz technologies
- High order Brunel harmonics and supercontinuum formed by a weak optical pump in presence of a strong terahertz field
- Diffraction at the Open End of Dielectric-Lined Circular Waveguide
- Diffraction at the Open-Ended Dielectric-Loaded Circular Waveguide: Rigorous Approach
- A cryogenic magneto-optical device for long wavelength radiation
- Tunable electronic structure and stoichiometry dependent disorder in Nanostructured VO films
- Terahertz generation by beamlet superposition
- Sub - THz Radiation from Dielectric Capillaries with Reflectors
- Self-calibration technique for characterization of integrated THz waveguides
- Beam Dynamics and Tolerance Studies of the THz-driven Electron Linac for the AXSIS Experiment
- 1.4-mJ High Energy Terahertz Radiation from Lithium Niobates
- Transverse Confinement of Electron Beams in a 2D Optical Lattice for Compact Coherent X-Ray Sources
- Terahertz resonant emission by optically excited infrared-active shear phonons in KY(MoO4)2
- Ultrafast Electron Diffraction: Visualizing Dynamic States of Matter
- 35 megawatt multicycle THz pulses from a homemade periodically poled macrocrystal
- Visualizing femtosecond dynamics with ultrafast electron probes through terahertz compression and time-stamping
- Half-percent terahertz generation efficiency from cryogenically cooled lithium niobate pumped by Ti:sapphire laser pulses
- Accurate simulation of THz generation with Finite-Element Time Domain methods
- Microbunching Instability Characterisation via Temporally Modulated Laser Pulses
- Monochromation of pulsed electron beams with terahertz radiation at a planar mirror
- Single-cycle scalable terahertz pulse source in refleciton geometry