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Rastigeev, S.A.

Paper Title Page
MOLP07

 Status of Accelerator Mass Spectrometer at BINP 

  • N.I.Alinovsky, A.D.Goncharov, V.F.Klyuev, A.V.Kozhemyakin, A.M.Kryuchkov, V. V.Parkhomchuk, M.V.Petrichenkov, S.A.Rastigeev, V.B.Reva
    Budker Institute of Nuclear Physics, Novosibirsk, Russia

Present status of the accelerator mass spectrometry (AMS) facility at BINP is described. The AMS facility with additional electric and magnetic analyzers into the terminal of tandem accelerator is dedicated for precise analysis of carbon isotopes. The results of experiments on ion beams acceleration and stripping are given.

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MOLP13

 Carbon Ion Accelerator Facility for Cancer Therapy 

  • E.Levichev, V.Parkhomchuk, S.Rastigeev, A.Skrinsky, V.Vostrikov
    Budker Institute of Nuclear Physics, Novosibirsk, Russia
  • M.Kumada
    NIRS, Chiba, Japan

A carbon ion or proton beams are a superior tool to x-rays in both physical and biological doses in treating a cancer. A carbon beam has an advantage in treating radiation resistant and deep-seated tumors. The main limitation of wide application is a high cost of facility. This problem can be solved by our proton and carbon ion accelerator facility proposal on the base of Cold Beam Synchrotron. The main feature of the facility is an application of electron cooling device. The ion beam is cooled down and the beam emittance and an energy spread are decreased. The final high quality cold ion beam with small transverse emittance and momentum spread allows to decrease significantly the aperture of the synchrotron and components of high energy beam transfer lines.

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