arXiv Open Access 2021

Direct laser-driven electron acceleration and energy gain in helical beams

Etele Molnár Dan Stutman
Lihat Sumber

Abstrak

A detailed study of direct laser-driven electron acceleration in paraxial Laguerre-Gaussian modes corresponding to helical beams $\text{LG}_{0m}$ with azimuthal modes $m=\left\{1,2,3,4,5\right\}$ is presented. Due to the difference between the ponderomotive force of the fundamental Gaussian beam $\text{LG}_{00}$ and helical beams $\text{LG}_{0m}$ we found that the optimal beam waist leading to the most energetic electrons at full width at half maximum is more than twice smaller for the latter and corresponds to a few wavelengths $Δw_0=\left\{6,11,19\right\}λ_0$ for laser powers of $P_0 = \left\{0.1,1,10\right\}$ PW. We also found that for azimuthal modes $m\geq 3$ the optimal waist should be smaller than $Δw_0 < 19 λ_0$. Using these optimal values we have observed that the average kinetic energy gain of electrons is about an order of magnitude larger in helical beams compared to the fundamental Gaussian beam. This average energy gain increases with the azimuthal index $m$ leading to collimated electrons of a few $100$ MeV energy in the direction of the laser propagation.

Penulis (2)

E

Etele Molnár

D

Dan Stutman

Format Sitasi

Molnár, E., Stutman, D. (2021). Direct laser-driven electron acceleration and energy gain in helical beams. https://arxiv.org/abs/2103.14346

Akses Cepat

Lihat di Sumber
Informasi Jurnal
Tahun Terbit
2021
Bahasa
en
Sumber Database
arXiv
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Open Access ✓