plasma physics

Efficient hot electron generation via low-coherence lasers

arXiv:2607.11045

summary

The study experimentally shows that using low‑coherence, moderately broadband lasers significantly increases hot‑electron production and hard X‑ray emission in laser‑produced plasmas compared to narrowband lasers.

Abstract

Hot electrons generated in laser-produced plasmas are a central focus in inertial confinement fusion, laboratory astrophysics, and high-energy-density physics. These electrons originate from instabilities in nonlinear laser-plasma interactions, which are critically modulated by laser bandwidth. Here, we experimentally demonstrate enhanced generation of hot electrons by utilizing instantaneous low-coherence lasers with two bandwidths (0.2% and 0.6%) at intensities of 2-8x10^{14} W/cm^2 and energies up to 620 J. A significant enhancement of hot electron temperature and hard X-ray yield is observed with the broadband lasers compared to a conventional narrowband laser. The results show that the hot electron energy conversion efficiency of the 0.6% broadband laser is approximately 4 times higher than that of the narrowband laser, reaching a maximum value of 2.8%. These findings validate a moderate-bandwidth laser as an efficient hot electron source and support the generation of bright X-ray sources for advanced imaging in high-energy-density physics.

Topics & keywords

#hot electrons#laser bandwidth#plasma instabilities#hard x-ray generation#inertial confinement fusionlow-coherence laserbroadband laserhot electron temperaturehard X-ray yieldenergy conversion efficiency
Efficient hot electron generation via low-coherence lasers · wovepaper