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Large Energy Depletion of a Beam Driver in a Plasma-Wakefield Accelerator

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2023

Physics School on Plasma Acceleration, DESY/UHHBad Honnef, DESY/UHH, Germany, 5 Feb 2024 - 10 Feb 20242024-02-052024-02-10  GO

Abstract: Beam-driven plasma-wakefield acceleration has the potential to reduce the size and construction cost of large-scale accelerator facilities, by providing accelerating fields orders of magnitude greater than that ofconventional accelerating structures. To keep the running costs affordable, high energy-transfer efficiency from the wall-plug to the accelerated bunch has to be demonstrated. For this, drive bunches must be efficiently produced, strong decelerating fields must be sustained for the drive bunches until their energy is depleted, and the resulting accelerating fields must be strongly beam loaded by the trailing bunches. Here we address the second of these points, showing measurements performed at FLASHForward using a 500 MeV drive bunch where approximately half of its total energy is deposited into a 20 cm long plasma. This level of energy-transfer efficiency demonstrates that plasma accelerators hold the potential to become competitive with conventional accelerators.


Contributing Institute(s):
  1. FTX Fachgruppe AST (HH_FH_FTX_AS)
  2. Beam-Driven Plasma Accelerators (MPA2)
Research Program(s):
  1. 621 - Accelerator Research and Development (POF4-621) (POF4-621)
  2. 6G2 - FLASH (DESY) (POF4-6G2) (POF4-6G2)
Experiment(s):
  1. FLASHForward

Appears in the scientific report 2023
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Private Collections > >DESY > >FH > >FTX > HH_FH_FTX_AS
Private Collections > >DESY > >M > MPA2
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 Record created 2023-12-12, last modified 2023-12-13


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