Author: Foussat, A.P.
Paper Title Page
WEPAB180 Design and Beam Dynamics Studies of a Novel Compact Recoil Separator Ring for Nuclear Research with Radioactive Beams 3031
 
  • J. Resta-López
    UVEG, Burjasot (Valencia), Spain
  • A.P. Foussat, G. Kirby
    CERN, Geneva, Switzerland
  • I. Martel
    University of Huelva, Huelva, Spain
  • V. Rodin
    The University of Liverpool, Liverpool, United Kingdom
  • V. Rodin
    Cockcroft Institute, Warrington, Cheshire, United Kingdom
 
  Funding: This work was supported by the Generalitat Valenciana under grant agreement CIDEGENT/2019/058
The re­cent de­vel­op­ment of ra­dioac­tive beam fa­cil­i­ties has sig­nif­i­cantly ex­panded the ca­pa­bil­i­ties for in­ves­ti­gat­ing the struc­ture of the atomic nu­cleus and the nu­clear in­ter­ac­tion. For in­stance, the HIE-ISOLDE fa­cil­ity at CERN de­liv­ers presently the largest range of low-en­ergy ra­dioac­tive beam avail­able world­wide. This en­ergy range is ideal for the study of nu­clear struc­ture, low-en­ergy dy­nam­ics and as­tro­physics by using nu­cleon trans­fer, Coulomb ex­ci­ta­tion and deep in­elas­tic re­ac­tions. All these stud­ies re­quire an ef­fi­cient and high-res­o­lu­tion re­coil sep­a­ra­tor for the clear iden­ti­fi­ca­tion of medium and large mass re­ac­tion frag­ments. To meet these needs, we pro­pose a ver­sa­tile re­coil sep­a­ra­tor for ra­dioiso­topes based on a com­pact stor­age ring, the Isolde Su­per­con­duct­ing Re­coil Sep­a­ra­tor (ISRS) formed of su­per­con­duct­ing com­bined-func­tion nested mag­nets with both, bend­ing and fo­cus­ing/de­fo­cus­ing func­tions. The ISRS is de­signed to op­er­ate in high mo­men­tum ac­cep­tance and isochro­nous modes. In this paper, we pre­sent the op­tics de­sign and de­tailed beam dy­nam­ics stud­ies for the per­for­mance char­ac­ter­i­sa­tion.
 
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DOI • reference for this paper ※ https://doi.org/10.18429/JACoW-IPAC2021-WEPAB180  
About • paper received ※ 19 May 2021       paper accepted ※ 01 July 2021       issue date ※ 31 August 2021  
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