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      Plasma Wakefield Acceleration with a Modulated Proton Bunch

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          Abstract

          The plasma wakefield amplitudes which could be achieved via the modulation of a long proton bunch are investigated. We find that in the limit of long bunches compared to the plasma wavelength, the strength of the accelerating fields is directly proportional to the number of particles in the drive bunch and inversely proportional to the square of the transverse bunch size. The scaling laws were tested and verified in detailed simulations using parameters of existing proton accelerators, and large electric fields were achieved, reaching 1 GV/m for LHC bunches. Energy gains for test electrons beyond 6 TeV were found in this case.

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          Self-modulation instability of a long proton bunch in plasmas

          An analytical model for the self-modulation instability of a long relativistic proton bunch propagating in uniform plasmas is developed. The self-modulated proton bunch resonantly excites a large amplitude plasma wave (wake field), which can be used for acceleration of plasma electrons. Analytical expressions for the linear growth rate and the number of exponentiations are given. We use the full three-dimensional particle-in-cell (PIC) simulations to study the beam self-modulation and the transition to the nonlinear stage. It is shown that the self-modulation of the proton bunch competes with the hosing instability which tends to destroy the plasma wave. A method is proposed and studied through PIC simulations to circumvent this problem which relies on the seeding of the self-modulation instability in the bunch.
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            Fine wakefield structure in the blowout regime of plasma wakefield accelerators

            K. Lotov (2003)
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              Simulation of proton driven plasma wakefield acceleration

              K. Lotov (2010)
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                Author and article information

                Journal
                06 May 2011
                Article
                10.1063/1.3641973
                1105.1292
                178bc22d-41f3-4f3f-b942-bc04047fce4e

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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                Custom metadata
                9 pages, 7 figures
                physics.acc-ph physics.plasm-ph

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