activity
20182021
most citedA magnetic spectrometer to measure electron bunches accelerated at AWAKE

13 citations · 13 across the 2 of their papers we have counts for

collaborators

6 papers

physics.plasm-ph2021

Simulation and Experimental Study of Proton Bunch Self-Modulation in Plasma with Linear Density Gradients

P. I. Morales Guzmán, P. Muggli, R. Agnello +88

We present numerical simulations and experimental results of the self-modulation of a long proton bunch in a plasma with linear density gradients along the beam path. Simulation re…

physics.plasm-ph2020

Experimental study of extended timescale dynamics of a plasma wakefield driven by a self-modulated proton bunch

J. Chappell, E. Adli, R. Agnello +96

Plasma wakefield dynamics over timescales up to 800 ps, approximately 100 plasma periods, are studied experimentally at the Advanced Wakefield Experiment (AWAKE). The development o…

physics.ins-det201913 cited

A magnetic spectrometer to measure electron bunches accelerated at AWAKE

J. Bauche, B. Biskup, M. Cascella +18

A magnetic spectrometer has been developed for the AWAKE experiment at CERN in order to measure the energy distribution of bunches of electrons accelerated in wakefields generated…

physics.acc-ph2018

Experimental observation of proton bunch modulation in a plasma, at varying plasma densities

E. Adli, A. Ahuja, O. Apsimon +109

We give direct experimental evidence for the observation of the full transverse self-modulation of a relativistic proton bunch propagating through a dense plasma. The bunch exits t…

physics.acc-ph2018

Experimental observation of plasma wakefield growth driven by the seeded self-modulation of a proton bunch

M. Turner, the AWAKE Collaboration

We measure the effects of transverse wakefields driven by a relativistic proton bunch in plasma with densities of and \unit[]{electrons/cm}…

physics.acc-ph2018

Acceleration of electrons in the plasma wakefield of a proton bunch

The AWAKE Collaboration, E. Adli, A. Ahuja +91

High energy particle accelerators have been crucial in providing a deeper understanding of fundamental particles and the forces that govern their interactions. In order to increase…