The current status of the MASHA setup

V. Yu. Vedeneev,A. M. Rodin,L. Krupa, A. V. Belozerov, E. V. Chernysheva, S. N. Dmitriev, A. V. Gulyaev,A. V. Gulyaeva, D. Kamas,J. Kliman, A. B. Komarov, S. Motycak, A. S. Novoselov,V. S. Salamatin,S. V. Stepantsov, A. V. Podshibyakin, S. A. Yukhimchuk, C. Granja, S. Pospisil

Hyperfine Interactions(2017)

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摘要
The MASHA setup designed as the mass-separator with the resolving power of about 1700, which allows mass identification of superheavy nuclides is described. The setup uses solid ISOL (Isotope Separation On-Line) method. In the present article the upgrade of some parts of MASHA are described: target box (rotating target + hot catcher), ion source based on electron cyclotron resonance, data acquisition, beam diagnostics and control systems. The upgrade is undertaken in order to increase the total separation efficiency, reduce the separation time, of the installation and working stability and make possible continuous measurements at high beam currents. Ion source efficiency was measured in autonomous regime with using calibrated gas leaks of Kr and Xe injected directly to ion source. Some results of the first experiments for production of radon isotopes using the multi-nucleon transfer reaction 48 Ca+ 242 Pu are described in the present article. The using of TIMEPIX detector with MASHA setup for neutron-rich Rn isotopes identification is also described.
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关键词
Mass-separator, ECR ion source, Hot catcher, Separation efficiency, Superheavy elements, Strip detector, TIMEPIX, 20-29.87.+g, 20-29.85.-c, 20-29.40.-n
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