Laser-driven grating type DLA (Dielectric Laser Accelerator) structures have been shown to produce accelerating gradients on the order of GeV/m. In simple $\beta$-matched grating structures due to the nature of the laser induced steady-state in-channel fields the per period forces on the particles are mostly in longitudinal direction. Even though strong transverse magnetic and electric fields are present, the net focusing effect over one period at maximum energy gain is negligible in the case of relativistic electrons. Stable acceleration of realistic electron beams in a DLA channel however requires the presence of significant net transverse forces. In this work we simulate and study the effect of using the transient temporal shape of short...
Symmetrically driven dual-grating type DLA (Dielectric Laser Accelerator) linac structures allow for...
A six-dimensional symplectic tracking approach exploiting the periodicity properties of dielectric l...
After nearly 100 years of particle acceleration, particle accelerator experiments continue providing...
Laser-driven grating type DLA (Dielectric Laser Accelerator) structures have been shown to produce a...
Laser-driven grating type DLA (Dielectric Laser Accelerator) structures have been shown to produce a...
Electron accelerators have a wide range of applications in basic research, medicine and industry. In...
Dielectric Laser Acceleration (DLA) is a nascent scheme of electron acceleration, which is particula...
We discuss recent developments and challenges of beam dynamics in Dielectric Laser Acceleration (DLA...
Dielectric Laser Acceleration (DLA) is a nascent scheme of electron acceleration, which is particula...
Dielectric laser acceleration (DLA) achieves remarkable gradients from the optical near fields of a ...
The concept of dielectric-laser acceleration (DLA) provides the highest gradients among breakdown-li...
We discuss recent developments and challenges of beam dynamics in Dielectric Laser Acceleration (DLA...
The experimental setup that allows for the observation of energy gain of electrons interacting with ...
The Accelerator on a CHip International Program (ACHIP) funded by the Gordon and Betty Moore Foundat...
Dielectric laser-driven accelerators (DLAs) based on grating structures are considered to be one of ...
Symmetrically driven dual-grating type DLA (Dielectric Laser Accelerator) linac structures allow for...
A six-dimensional symplectic tracking approach exploiting the periodicity properties of dielectric l...
After nearly 100 years of particle acceleration, particle accelerator experiments continue providing...
Laser-driven grating type DLA (Dielectric Laser Accelerator) structures have been shown to produce a...
Laser-driven grating type DLA (Dielectric Laser Accelerator) structures have been shown to produce a...
Electron accelerators have a wide range of applications in basic research, medicine and industry. In...
Dielectric Laser Acceleration (DLA) is a nascent scheme of electron acceleration, which is particula...
We discuss recent developments and challenges of beam dynamics in Dielectric Laser Acceleration (DLA...
Dielectric Laser Acceleration (DLA) is a nascent scheme of electron acceleration, which is particula...
Dielectric laser acceleration (DLA) achieves remarkable gradients from the optical near fields of a ...
The concept of dielectric-laser acceleration (DLA) provides the highest gradients among breakdown-li...
We discuss recent developments and challenges of beam dynamics in Dielectric Laser Acceleration (DLA...
The experimental setup that allows for the observation of energy gain of electrons interacting with ...
The Accelerator on a CHip International Program (ACHIP) funded by the Gordon and Betty Moore Foundat...
Dielectric laser-driven accelerators (DLAs) based on grating structures are considered to be one of ...
Symmetrically driven dual-grating type DLA (Dielectric Laser Accelerator) linac structures allow for...
A six-dimensional symplectic tracking approach exploiting the periodicity properties of dielectric l...
After nearly 100 years of particle acceleration, particle accelerator experiments continue providing...