Overview Of Wakefield Accelerator

Recent years have seen spectacular progress in the development of innovative acceleration methods that are not based on traditional RF accelerating structures. These novel developments are at the interface of laser, plasma and accelerator physics and may potentially lead to much more compact and cost effective accelerator facilities. While primarily focusing on the ability to accelerate charged particles with much larger gradients than traditional RF, these new techniques have yet to demonstrate comparable performances to RF in terms of both beam parameters and reproducibility. In this lecture will review the most promising developments in new acceleration methods and it will present the status of ongoing projects including the European EuPRAXIA project.

Video duration: 01:01:03

CAS - CERN Accelerator School

CAS Advanced Accelerator Physics, 6-18 November 2022, Sevrier, France

Related identifier:
- Is part of: https://indico.cern.ch/event/1126689/contributions/5068878/ (URL)

Copyright: CERN (2022)

Licence: Other (Attribution)

Contact: Noemi Caraban

Keywords: ERRARIO Massimo, plasma wake field, laser wake field, beam driven, betatron radiation, free electron laser, EuPRAXIA project, Advanced, RF

Version: LECTURES-VIDEO-2026-480-001

Status: Active

Date created: 2022-11-10

Date published: 2022-11-10

Authors: Noemi Caraban

Contributors: Ferrario Massimo


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