Dynamic control of laser driven electron acceleration in a photonic structure using programmable optical pulses

Fuente: arXiv
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Main Authors: Crisp, Sophie, England, R. Joel, Ody, Alexander, Musumeci, Pietro
Format: Preprint
Published: 2025
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author Crisp, Sophie
England, R. Joel
Ody, Alexander
Musumeci, Pietro
author_facet Crisp, Sophie
England, R. Joel
Ody, Alexander
Musumeci, Pietro
contents Progress in optical techniques has made precision control of the phase profile in optical pulses common and accessible in scientific laboratories. Carefully shaping the field profile of a laser pulse can be used to master the dynamics of electrons traveling in photonic accelerating structures such as the ones obtained by precisely aligning two dielectric gratings. Here we show that by applying a liquid-crystal-mask to program the phase and amplitude of an infrared laser pulse in combination with a pulse front tilt scheme, it is possible to implement dynamic control on a laser accelerator. This results in a nearly limitless live tuning capability of the accelerator beam dynamics, allowing the demonstration software-based correction of structure and optical front imperfections, implementation of transverse focusing schemes, control of the energy and charge of the output beam, and ultimately optimization of the interaction length, leading to measured energy gains of up to 0.55 MeV.
format Preprint
id arxiv_https___arxiv_org_abs_2509_08170
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Dynamic control of laser driven electron acceleration in a photonic structure using programmable optical pulses
Crisp, Sophie
England, R. Joel
Ody, Alexander
Musumeci, Pietro
Accelerator Physics
Optics
Progress in optical techniques has made precision control of the phase profile in optical pulses common and accessible in scientific laboratories. Carefully shaping the field profile of a laser pulse can be used to master the dynamics of electrons traveling in photonic accelerating structures such as the ones obtained by precisely aligning two dielectric gratings. Here we show that by applying a liquid-crystal-mask to program the phase and amplitude of an infrared laser pulse in combination with a pulse front tilt scheme, it is possible to implement dynamic control on a laser accelerator. This results in a nearly limitless live tuning capability of the accelerator beam dynamics, allowing the demonstration software-based correction of structure and optical front imperfections, implementation of transverse focusing schemes, control of the energy and charge of the output beam, and ultimately optimization of the interaction length, leading to measured energy gains of up to 0.55 MeV.
title Dynamic control of laser driven electron acceleration in a photonic structure using programmable optical pulses
topic Accelerator Physics
Optics
url https://arxiv.org/abs/2509.08170