A cold electron-impact ion source driven by a photo-cathode – New opportunities for the delivery of radioactive molecular beams?

Author:

Ballof Jochen,Au Mia,Barbero Ermanno,Chrysalidis Katerina,Düllmann Christoph E,Fedosseev Valentin,Granados Eduardo,Heinke Reinhard,Marsh Bruce A,Owen Michael,Rothe Sebastian,Stora Thierry,Yakushev Alexander

Abstract

Abstract The thick-target ISOL (Isotope mass Separation OnLine) method provides beams of more than 1000 radionuclides of 74 elements. The method is well established for elements with sufficiently high volatility at ca. 2000 °C. To extract non-volatile elements the formation of a volatile molecule is required. While successful in some cases (e.g. carbon or boron), most of these elements are not yet available as ISOL beam. A variety of volatile carrier molecules has been proposed for all elements produced in the target material, but their probability of survival during the extraction and ionization process is often limited by the high temperatures required for isotope diffusion in the thick targets and for ion source operation. While cold target concepts have already been proposed, the normal mode of operation of the typically used Versatile Arc Discharge Ion Source (VADIS) with a hot cathode is not well suited. Here, we report about first measurements with an electron-impact ion source operated at ambient temperature using electrons that were liberated via the photo-electric effect from a copper cathode.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Opportunities for fundamental physics research with radioactive molecules;Reports on Progress in Physics;2024-07-12

2. Target Development towards First Production of High-Molar- Activity 44gSc and 47Sc by Mass Separation at CERN-MEDICIS;Pharmaceuticals;2024-03-18

3. Targets and ion sources at CERN-ISOLDE — Facilities and developments;Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms;2023-09

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