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High-gradient plasma and laser accelerators

MPS-Authors

Assmann,  R.
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

Gschwendtner,  E.
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

Cassou,  K.
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

Corde,  S.
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

Corner,  L.
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

Cros,  B.
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

Ferrario,  M.
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

Hooker,  S.
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

Ischebeck,  R.
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

Latina,  A.
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

Lundh,  O.
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

Muggli,  P.
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

Nghiem,  P.
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

Osterhoff,  J.
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

Raubenheimer,  T.
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

Specka,  A.
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

Vieira,  J.
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

Wing,  M.
Max Planck Institute for Physics, Max Planck Society and Cooperation Partners;

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Citation

Assmann, R., Gschwendtner, E., Cassou, K., Corde, S., Corner, L., Cros, B., et al. (2022). High-gradient plasma and laser accelerators. In CERN Yellow Reports: Monographs (pp. 91).


Cite as: https://hdl.handle.net/21.11116/0000-000C-B567-4
Abstract
Novel high-gradient accelerators have demonstrated acceleration of electrons and positrons with electric field strengths of 1 to > 100 GeV/m. This is about 10 to 1000 times higher than achieved in RF-based accelerators, and as such they have the potential to overcome the limitations associated with RF cavities. Plasma-based accelerators have produced multi-GeV bunches with parameters approaching those suitable for a linear collider. A significant reduction in size and, perhaps, cost of future accelerators can therefore in principle be envisaged.