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One-dimensional focusing of an electron beam by a laser-driven cylindrical blowout wakefield in orthogonal configuration.

POSTER

Abstract

Laser plasma wakefields provide accelerating gradients 1000× greater than conventional RF cavities with strong transverse focusing forces, enabling compact beam control systems. Prior studies have primarily focused on collinear geometries, where the focusing force is radially symmetric, limiting directional control. In this work, we present a novel regime that forms a cylindrical blowout wakefield structure, enabling one-dimensional (1D) control over the focusing geometry for an orthogonally propagating beam. This regime is driven by a relativistic-intensity laser (a₀ ~ 1) with a pulse duration of 1–2 plasma wavelengths, which modifies the electron trajectories to generate a cylindrical wake. Particle-in-cell (FBPIC) simulations show that this regime exhibits focusing forces that mimic blowout behavior while producing a near-flat accelerating field. These combined features support asymmetric, i.e., 1D, transverse focusing. Experiments at ATF, BNL used a 2–3 TW, 2 ps, 9.2 μm CO₂ laser focused into a hydrogen gas jet at a plasma density of 3 × 10¹⁵ cm⁻³. A 50–60 MeV, 150–200 fs electron beam was used to probe the wake; imprinted deflection patterns were imaged downstream on YAG:Ce scintillator screens, measuring a focal length of ~1–2 cm. The results validate this regime and highlight its potential to scale for 100 GeV beam focusing in advanced accelerator systems.

Presenters

  • Apurva S Gaikwad

    Stony Brook University

Authors

  • Apurva S Gaikwad

    Stony Brook University

  • Naveen Pathak

    Stony Brook University

  • Irina Petrushina

    Stony Brook University (SUNY)

  • Rafal Zgadzaj

    University of Texas at Austin

  • Igor V Pogorelsky

    Brookhaven National Laboratory

  • Marcus Babzien

    Brookhaven National Laboratory

  • William H Li

    Brookhaven National Laboratory (BNL)

  • Mikhail Fedurin

    Brookhaven National Laboratory

  • Rotem Kupfer

    Brookhaven National Laboratory

  • Karl Kusche

    Brookhaven National Laboratory

  • Mikhail P Polyanskiy

    Brookhaven National Laboratory

  • Mark A Palmer

    Brookhaven National Laboratory

  • Roman V. Samulyak

    Stony Brook University (SUNY)

  • Chaojie Zhang

    University of California, Los Angeles

  • Evan Trommer

    Stony Brook University (SUNY)

  • Kyle Glen Miller

    Laboratory for Laser Energetics (LLE)

  • Yipeng Wu

    University of California, Los Angeles

  • Audrey Farrell

    University of California, Los Angeles

  • Marisa E Petrusky

    University of Colorado, Boulder

  • Nicholas F Manzella

    Stony Brook University (SUNY)

  • Michael C Downer

    University of Texas at Austin

  • Chandrashekhar Joshi

    University of California, Los Angeles

  • Vladimir N Litvinenko

    Stony Brook University (SUNY)

  • Navid Vafaei-Najafabadi

    Stony Brook University