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physics.acc-ph2019

Proton Driven Plasma Wakefield Acceleration in AWAKE

Edda Gschwendtner, Marlene Turner, the AWAKE Collaboration

In this article, we briefly summarize the experiments performed during the first Run of the Advanced Wakefield Experiment, AWAKE, at CERN (European Organization for Nuclear Researc…

physics.acc-ph2018

High-quality positrons from a multi-proton bunch driven hollow plasma wakefield accelerator

Y. Li, G. Xia, K. V. Lotov +2

By means of hollow plasma, multiple proton bunches work well in driving nonlinear plasma wakefields and accelerate electrons to energy frontier with preserved beam quality. However…

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…

physics.acc-ph2018

Amplitude enhancement of the self-modulated plasma wakefields

Y. Li, G. Xia, K. V. Lotov +3

Seeded Self-modulation (SSM) has been demonstrated to transform a long proton bunch into many equidistant micro-bunches (e.g., the AWAKE case), which then resonantly excite strong…