In this paper a new method of determining the energy spread of a relativistic electron beam from a laser-driven plasma wakefield accelerator by measuring radiation from an undulator is presented. This could be used to determine the beam characteristics of multi-GeV accelerators where conventional spectrometers are very large and cumbersome. Simultaneous measurement of the energy spectra of electrons from the wakefield accelerator in the 55-70 MeV range and the radiation spectra in the wavelength range of 700-900 nm of synchrotron radiation emitted from a 50 period undulator confirm a narrow energy spread for electrons accelerated over the dephasing distance where beam loading leads to energy compression. Measured energy spreads of less than...
A Laser Wakefield Accelerator (LWFA) is under de-velopment at Lawrence Livermore National Laboratory...
© 2019 Author(s).We present a technique, based on a dipole magnet spectrometer containing multiple s...
The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme is developing ...
In this paper a new method of determining the energy spread of a relativistic electron beam from a l...
Currently particle accelerators such as the Large Hadron Collider use RF cavities with a maximum fie...
The design and current status of experiments to couple the Tapered Hybrid Undulator (THUNDER) to the...
The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme is developing ...
to couple the THUNDER undulator to the LOASIS Lawrence Berkeley National Laboratory (LBNL) laser wak...
Modern high-gain free-electron lasers make use of high-brightness ultra-relativistic electron beams....
In the quest for ultra-compact sources, a test experiment is under preparation, to couple an electro...
The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme at the Univers...
The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme at the Univers...
International audienceSince the laser invention, the advent of X-ray Free Electron Lasers (FEL) half...
A Laser Wakefield Accelerator (LWFA) is under de-velopment at Lawrence Livermore National Laboratory...
© 2019 Author(s).We present a technique, based on a dipole magnet spectrometer containing multiple s...
The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme is developing ...
In this paper a new method of determining the energy spread of a relativistic electron beam from a l...
Currently particle accelerators such as the Large Hadron Collider use RF cavities with a maximum fie...
The design and current status of experiments to couple the Tapered Hybrid Undulator (THUNDER) to the...
The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme is developing ...
to couple the THUNDER undulator to the LOASIS Lawrence Berkeley National Laboratory (LBNL) laser wak...
Modern high-gain free-electron lasers make use of high-brightness ultra-relativistic electron beams....
In the quest for ultra-compact sources, a test experiment is under preparation, to couple an electro...
The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme at the Univers...
The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme at the Univers...
International audienceSince the laser invention, the advent of X-ray Free Electron Lasers (FEL) half...
A Laser Wakefield Accelerator (LWFA) is under de-velopment at Lawrence Livermore National Laboratory...
© 2019 Author(s).We present a technique, based on a dipole magnet spectrometer containing multiple s...
The Advanced Laser-Plasma High-Energy Accelerators towards X-rays (ALPHA-X) programme is developing ...