Literature DB >> 26329185

Fast and efficient charge breeding of the Californium rare isotope breeder upgrade electron beam ion source.

P N Ostroumov1, A Barcikowski1, C A Dickerson1, A Perry1, A I Pikin2, S I Sharamentov1, R C Vondrasek1, G P Zinkann1.   

Abstract

The Electron Beam Ion Source (EBIS), developed to breed Californium Rare Isotope Breeder Upgrade (CARIBU) radioactive beams at Argonne Tandem Linac Accelerator System (ATLAS), is being tested off-line. A unique property of the EBIS is a combination of short breeding times, high repetition rates, and a large acceptance. Overall, we have implemented many innovative features during the design and construction of the CARIBU EBIS as compared to the existing EBIS breeders. The off-line charge breeding tests are being performed using a surface ionization source that produces singly charged cesium ions. The main goal of the off-line commissioning is to demonstrate stable operation of the EBIS at a 10 Hz repetition rate and a breeding efficiency into single charge state higher than 15%. These goals have been successfully achieved and exceeded. We have measured (20% ± 0.7%) breeding efficiency into the single charge state of 28+ cesium ions with the breeding time of 28 ms. In general, the current CARIBU EBIS operational parameters can provide charge breeding of any ions in the full mass range of periodic table with high efficiency, short breeding times, and sufficiently low charge-to-mass ratio, 1/6.3 for the heaviest masses, for further acceleration in ATLAS. In this paper, we discuss the parameters of the EBIS and the charge breeding results in a pulsed injection mode with repetition rates up to 10 Hz.

Entities:  

Year:  2015        PMID: 26329185     DOI: 10.1063/1.4929464

Source DB:  PubMed          Journal:  Rev Sci Instrum        ISSN: 0034-6748            Impact factor:   1.523


  1 in total

1.  Measuring the difference in nuclear charge radius of Xe isotopes by EUV spectroscopy of highly charged Na-like ions.

Authors:  R Silwal; A Lapierre; J D Gillaspy; J M Dreiling; S A Blundell; A Borovik; G Gwinner; A C C Villari; Yu Ralchenko; E Takacs
Journal:  Phys Rev A (Coll Park)       Date:  2018       Impact factor: 3.140

  1 in total

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