DOE OSTI · 1802738
Optical Guiding in Meter-Scale Plasma Waveguides
Abstract
In this work, we demonstrate a new highly tunable technique for generating meter-scale low density plasma waveguides. Such guides can enable laser-driven electron acceleration to tens of GeV in a single stage. Plasma waveguides are imprinted in hydrogen gas by optical field ionization induced by two time-separated Bessel beam pulses: The first pulse, a $J_0$ beam, generates the core of the waveguide, while the delayed second pulse, here a $J_8$ or $J_{16}$ beam, generates the waveguide cladding, enabling wide control of the guide’s density, depth, and mode confinement. We demonstrate guiding of intense laser pulses over hundreds of Rayleigh lengths with on-axis plasma densities as low as $N_{e0}$ ~ 5 × 10 16 cm –3 .
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Miao, B., Feder, L., Shrock, J. E., Goffin, A., Milchberg, H. M.. 2020-08-14. Optical Guiding in Meter-Scale Plasma Waveguides. https://doi.org/10.1103/physrevlett.125.074801
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