most citedTransition between Instability and Seeded Self-Modulation of a Relativistic Particle Bunch in Plasma

35 citations · 68 across the 5 of their papers we have counts for

collaborators

5 papers

physics.acc-ph2022

Automatic setup of 18 MeV electron beamline using machine learning

Francesco Maria Velotti, Brennan Goddard, Verena Kain +3

To improve the performance-critical stability and brightness of the electron bunch at injection into the proton-driven plasma wakefield at the AWAKE CERN experiment, automation app…

physics.plasm-ph2020★ 35 cited

Transition between Instability and Seeded Self-Modulation of a Relativistic Particle Bunch in Plasma

F. Batsch, P. Muggli, R. Agnello +94

We use a relativistic ionization front to provide various initial transverse wakefield amplitudes for the self-modulation of a long proton bunch in plasma. We show experimentally t…

physics.acc-ph2020★ 1 cited

Proton beam defocusing in AWAKE: comparison of simulations and measurements

A. A. Gorn, M. Turner, E. Adli +96

In 2017, AWAKE demonstrated the seeded self-modulation (SSM) of a 400 GeV proton beam from the Super Proton Synchrotron (SPS) at CERN. The angular distribution of the protons defle…

physics.plasm-ph2020★ 17 cited

Proton Bunch Self-Modulation in Plasma with Density Gradient

F. Braunmüller, T. Nechaeva, AWAKE Collboration

We study experimentally the effect of linear plasma density gradients on the self-modulation of a 400\,GeV proton bunch. Results show that a positive/negative gradient in/decreases…

physics.acc-ph2020★ 15 cited

Experimental Study of Wakefields Driven by a Self-Modulating Proton Bunch in Plasma

M. Turner, P. Muggli, the AWAKE Collaboration

We study experimentally the longitudinal and transverse wakefields driven by a highly relativistic proton bunch during self-modulation in plasma. We show that the wakefields' growt…