Skip to main navigation Skip to search Skip to main content

PERLE. Powerful energy recovery linac for experiments. Conceptual design report

  • D. Angal-Kalinin
  • , G. Arduini
  • , B. Auchmann
  • , J. Bernauer
  • , A. Bogacz
  • , F. Bordry
  • , S. Bousson
  • , C. Bracco
  • , O. Brüning
  • , R. Calaga
  • , K. Cassou
  • , V. Chetvertkova
  • , E. Cormier
  • , E. Daly
  • , D. Douglas
  • , K. Dupraz
  • , B. Goddard
  • , J. Henry
  • , A. Hutton
  • , E. Jensen
  • W. Kaabi, M. Klein, P. Kostka, N. Lasheras, E. Levichev, F. Marhauser, A. Martens, A. Milanese, B. Militsyn, Y. Peinaud, D. Pellegrini, N. Pietralla, Y. Pupkov, R. Rimmer, K. Schirm, D. Schulte, S. Smith, A. Stocchi, A. Valloni, C. Welsch, G. Willering, D. Wollmann, F. Zimmermann, F. Zomer
  • Daresbury Laboratory
  • CERN
  • Thomas Jefferson National Accelerator Facility
  • Institut de Physique Nucléaire
  • CNRS
  • University of Bordeaux 1
  • University of Liverpool
  • Budker Institute of Nuclear Physics (BINP)
  • Technische Universität Darmstadt

Research output: Contribution to journalArticlepeer-review

56 Scopus citations

Abstract

A conceptual design is presented of a novel energy-recovering linac (ERL) facility for the development and application of the energy recovery technique to linear electron accelerators in the multi-turn, large current and large energy regime. The main characteristics of the powerful energy recovery linac experiment facility (PERLE) are derived from the design of the Large Hadron electron Collider, an electron beam upgrade under study for the LHC, for which it would be the key demonstrator. PERLE is thus projected as a facility to investigate efficient, high current (HC) (>10 mA) ERL operation with three re-circulation passages through newly designed SCRF cavities, at 801.58 MHz frequency, and following deceleration over another three re-circulations. In its fully equipped configuration, PERLE provides an electron beam of approximately 1 GeV energy. A physics programme possibly associated with PERLE is sketched, consisting of high precision elastic electron-proton scattering experiments, as well as photo-nuclear reactions of unprecedented intensities with up to 30 MeV photon beam energy as may be obtained using Fabry-Perot cavities. The facility has further applications as a general technology test bed that can investigate and validate novel superconducting magnets (beam induced quench tests) and superconducting RF structures (structure tests with HC beams, beam loading and transients). Besides a chapter on operation aspects, the report contains detailed considerations on the choices for the SCRF structure, optics and lattice design, solutions for arc magnets, source and injector and on further essential components. A suitable configuration derived from the here presented design concept may next be moved forward to a technical design and possibly be built by an international collaboration which is being established.

Original languageEnglish
Article number065003
JournalJournal of Physics G: Nuclear and Particle Physics
Volume45
Issue number6
DOIs
StatePublished - May 3 2018

Keywords

  • elastic ep scattering
  • electron beam
  • energy recovery
  • Fabry-Perot cavities
  • LHeC
  • photo nuclear physics
  • superconducting RF

Fingerprint

Dive into the research topics of 'PERLE. Powerful energy recovery linac for experiments. Conceptual design report'. Together they form a unique fingerprint.

Cite this