The chirped-pulse inverse free electron laser (CIFEL) interaction has been investigated by considering a tightly focused chirped Gaussian laser pulse and a helical undulator in vacuum. We consider the more realistic description of a laser, i.e., seventh-order calculation in the spatial term and first-order calculation in the temporal term. Numerical calculations show that better electron acceleration can be achieved using a tightly focused chirped Gaussian laser pulse in the CIFEL scheme. The investigation shows that a 10 MeV electron can be accelerated up to a few giga-electron volts energy with the present available laser parameters.11Nsciescopu
The role of laser frequency chirps in the laser wakefield accelerator is examined. We show that in t...
We study and discuss electron acceleration in vacuum interacting with fundamental Gaussian pulses us...
International audienceX-ray free-electron lasers (FELs) are powerful tools for probing matter proper...
Electron acceleration by a chirped laser pulse is studied numerically in the presence of helical mag...
The inverse free-electron laser (IFEL) interaction is studied both theoretically and numerically in ...
Irrespective of the chirped pulse inverse free electron laser (CPIFEL) concept, a comparative study ...
For a tightly focused laser, the beam-waist radius is of the same order as the wavelength and the lo...
Efficient coupling of relativistic electron beams with high power radiation lies at the heart of adv...
Linear chirped pulse amplification at single pass free-electron laser (FEL) amplifier is studied thr...
We present data from our study of a device known as the inverse free electron laser. First, numerica...
The interaction of free electrons with intense laser beams in vacuum is studied using a 3D test par...
Numerical solutions, to the fully relativistic equations of motion of a single electron injected sid...
The paper presents a scheme of vacuum electron acceleration due to tightly focused linearly polarize...
A potential method to improve the free electron laser’s output when the electron pulse has a large e...
A two-parameter model for chirping the frequency of a plane-wave laser pulse is introduced using a b...
The role of laser frequency chirps in the laser wakefield accelerator is examined. We show that in t...
We study and discuss electron acceleration in vacuum interacting with fundamental Gaussian pulses us...
International audienceX-ray free-electron lasers (FELs) are powerful tools for probing matter proper...
Electron acceleration by a chirped laser pulse is studied numerically in the presence of helical mag...
The inverse free-electron laser (IFEL) interaction is studied both theoretically and numerically in ...
Irrespective of the chirped pulse inverse free electron laser (CPIFEL) concept, a comparative study ...
For a tightly focused laser, the beam-waist radius is of the same order as the wavelength and the lo...
Efficient coupling of relativistic electron beams with high power radiation lies at the heart of adv...
Linear chirped pulse amplification at single pass free-electron laser (FEL) amplifier is studied thr...
We present data from our study of a device known as the inverse free electron laser. First, numerica...
The interaction of free electrons with intense laser beams in vacuum is studied using a 3D test par...
Numerical solutions, to the fully relativistic equations of motion of a single electron injected sid...
The paper presents a scheme of vacuum electron acceleration due to tightly focused linearly polarize...
A potential method to improve the free electron laser’s output when the electron pulse has a large e...
A two-parameter model for chirping the frequency of a plane-wave laser pulse is introduced using a b...
The role of laser frequency chirps in the laser wakefield accelerator is examined. We show that in t...
We study and discuss electron acceleration in vacuum interacting with fundamental Gaussian pulses us...
International audienceX-ray free-electron lasers (FELs) are powerful tools for probing matter proper...