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Updated: Mar 24, 2026

Quasi-light Storage for Optical Data Packets
Published on: February 6, 2014
Synchronized Ion Acceleration by Ultraintense Slow Light
A V Brantov1,2, E A Govras1,2, V F Kovalev2,3
1P. N. Lebedev Physics Institute, Russian Academy of Science, Moscow 119991, Russia.
Abstract:
An effective scheme of synchronized laser-triggered ion acceleration and the corresponding theoretical model are proposed for a slow light pulse of relativistic intensity, which penetrates into a near-critical-density plasma, strongly slows, and then increases its group velocity during propagation within a target. The 3D particle-in-cell simulations confirm this concept for proton acceleration by a femtosecond petawatt-class laser pulse experiencing relativistic self-focusing, quantify the characteristics of the generated protons, and demonstrate a significant increase of their energy compared with the proton energy generated from optimized ultrathin solid dense foils.

