Passer à la navigation principale Passer à la recherche Passer au contenu principal

Fundamentals and Applications of Hybrid LWFA-PWFA

  • Bernhard Hidding
  • , Andrew Beaton
  • , Lewis Boulton
  • , Sebastién Corde
  • , Andreas Doepp
  • , Fahim Ahmad Habib
  • , Thomas Heinemann
  • , Arie Irman
  • , Stefan Karsch
  • , Gavin Kirwan
  • , Alexander Knetsch
  • , Grace Gloria Manahan
  • , Alberto Martinez M. de la Ossa
  • , Alastair Nutter
  • , Paul Scherkl
  • , Ulrich Schramm
  • , Daniel Ullmann
  • Department of Physics
  • University of Strathclyde
  • Cockcroft Institute
  • Sci-Tech Daresbury
  • c/o DESY
  • Université Paris-Saclay
  • Universität München
  • Institute of Radiooncology - OncoRay
  • Max-Planck Institut für Quantenoptik
  • Central Laser Facility

Résultats de recherche: Le chapitre dans un livre, un rapport, une anthologie ou une collectionContribution à une conférenceRevue par des pairs

Résumé

Fundamental similarities and differences between laser-driven plasma wakefield acceleration (LWFA) and particle-driven plasma wakefield acceleration (PWFA) are discussed. The complementary features enable the conception and development of novel hybrid plasma accelerators, which allow previously not accessible compact solutions for high quality electron bunch generation and arising applications. Very high energy gains can be realized by electron beam drivers even in single stages because PWFA is practically dephasing-free and not diffraction-limited. These electron driver beams for PWFA in turn can be produced in compact LWFA stages. In various hybrid approaches, these PWFA systems can be spiked with ionizing laser pulses to realize tunable and high-quality electron sources via optical density downramp injection (also known as plasma torch) or plasma photocathodes (also known as Trojan Horse) and via wakefield-induced injection (also known as WII). These hybrids can act as beam energy, brightness and quality transformers, and partially have built-in stabilizing features. They thus offer compact pathways towards beams with unprecedented emittance and brightness, which may have transformative impact for light sources and photon science applications. Furthermore, they allow the study of PWFA-specific challenges in compact setups in addition to large linac-based facilities, such as fundamental beam–plasma interaction physics, to develop novel diagnostics, and to develop contributions such as ultralow emittance test beams or other building blocks and schemes which support future plasma-based collider concepts.

langue originaleAnglais
titreLaser-Driven Sources of High Energy Particles and Radiation - Lecture Notes of the “Capri” Advanced Summer School
rédacteurs en chefLeonida Antonio Gizzi, Petra Koester, Antonio Giulietti, Ralph Assmann
EditeurSpringer Science and Business Media, LLC
Pages95-120
Nombre de pages26
ISBN (imprimé)9783030258498
Les DOIs
étatPublié - 1 janv. 2019
Modification externeOui
EvénementAdvanced Summer School on Laser-Driven Sources of High Energy Particles and Radiation, 2017 - Capri, Italie
Durée: 9 juil. 201716 juil. 2017

Série de publications

NomSpringer Proceedings in Physics
Volume231
ISSN (imprimé)0930-8989
ISSN (Electronique)1867-4941

Une conférence

Une conférenceAdvanced Summer School on Laser-Driven Sources of High Energy Particles and Radiation, 2017
Pays/TerritoireItalie
La villeCapri
période9/07/1716/07/17

Empreinte digitale

Examiner les sujets de recherche de « Fundamentals and Applications of Hybrid LWFA-PWFA ». Ensemble, ils forment une empreinte digitale unique.

Contient cette citation