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Sub-5-fs compression and synchronization of relativistic electron bunches enabled by a high-gradient α-magnet and low-jitter photoinjector

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arxiv 2508.03946 v1 pith:63Y6JAL6 submitted 2025-08-05 physics.acc-ph

Sub-5-fs compression and synchronization of relativistic electron bunches enabled by a high-gradient $\alpha$-magnet and low-jitter photoinjector

classification physics.acc-ph
keywords synchronizationbunchdurationelectronphysicsultrafastalphabeam
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

Generating high-brightness relativistic electron bunches with few-femtosecond duration, while simultaneously achieving few-fs synchronization with ultrafast lasers, remains an outstanding challenge at the frontier of accelerator physics and ultrafast science. In this Letter, we present the beam physics and experimental demonstration of a new method that, for the first time, enables simultaneous control of bunch duration and synchronization with few-fs precision. Timing stabilization is achieved using a tailored high-gradient $\alpha$-magnet that optimizes the correlation between time of flight and momentum, together with a photocathode RF gun designed to suppress the effect of RF-to-laser timing jitter. Compression is realized by manipulating the time-momentum correlation in phase space, primarily through space-charge effects. Sub-5-fs rms bunch duration and synchronization are demonstrated. This method establishes a new regime in electron bunch control, unlocking new capabilities for ultrafast beam physics and applications.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Terahertz control of relativistic electron beams for femtosecond bunching and laser-synchronized temporal locking

    physics.acc-ph 2025-08 conditional novelty 7.0

    THz-driven energy modulation of 35.5 MeV electron bunches enables modeled compression to 15 fs bunches and passive 25 fs timing lock to the drive laser.

  2. High temporal resolution THz streaking of high brightness relativistic electron beams

    physics.acc-ph 2026-04 unverdicted novelty 5.0

    Systematic experimental characterization of horn-coupled THz waveguide streaking structures establishes design principles for ultrafast relativistic electron beam diagnostics.

  3. High temporal resolution THz streaking of high brightness relativistic electron beams

    physics.acc-ph 2026-04 unverdicted novelty 5.0

    Experimental tests of horn-coupled THz waveguides establish design principles and performance limits for high temporal resolution streaking of high-brightness relativistic electron beams.