Extended interaction length laser-driven acceleration in a tunable dielectric structure

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Abstract

The development of long, tunable structures is critical to increasing energy gain in laser-driven dielectric accelerators (DLAs). Here we combine pulse-front-tilt illumination with slab-geometry structures assembled by precisely aligning off-the-shelf 4 mm long transmission gratings to achieve up to 200 keV energy modulation for 6 MeV injected electrons. The effective interaction length is longer than 1 mm, limited by the dephasing of the accelerated particles in the structure. The piezo-based independent mounting system for the gratings allows tuning of the gap and field distribution inside the structure.

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Crisp, S., Ody, A., England, J., & Musumeci, P. (2024). Extended interaction length laser-driven acceleration in a tunable dielectric structure. Physical Review Accelerators and Beams, 27(5). https://doi.org/10.1103/PhysRevAccelBeams.27.051303

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