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B u d k e r I N P VEPP-4M tunnel view BINP accelerator facilities J/ and physics - lepton precise mass measurement - physics 5 GeV collider
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B u d k e r I N P VEPP-2000 electron-positron collider BINP accelerator facilities
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B u d k e r I N P BINP accelerator facilities 2 linacs in series (300 MeV for e and 510 MeV for e + e ) and a 510 MeV damping ring. A planning efficiency of this facility is around 2 10 10 e + e /second. Injection facility damping ring
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B u d k e r I N P FEL based on the RF accelerator-recuperator BINP accelerator facilities E max = 100 MeV I av = 50 mA I max = 100-200 A f = 22.5 MHz, T pulse = 10-20 ps, Lasing in the therahertz region (~120 m) was achieved in the first stage of FEL (E = 12 MeV) in 2003
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Dedicated SR source Siberia-2 Siberia-2 synchrotron light source (Kurchatov Institute, Moscow) completely developed and manufactured turn-key at BINP. It is intended for SR experiments in the 0.1–2000 A o wavelength range. The facility comprises the dedicated storage ring Siberia-2 with an energy of 2.5. GeV and the Siberia-1 storage ring (E = 450 MeV) which can operate either as SR source in VUV and soft X-Ray range or as the booster injector for Siberia-2.
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SR source TNK (Zelenograd) TNK synchrotron light source (Zelenograd) is being completely developed and manufactured turn-key at BINP. It is intended for SR experiments in the 1–2000 A o wavelength range for the metrology and technology tasks. The facility comprises the dedicated storage ring TNK with an energy of 1.6 GeV and the booster (E = 450 MeV).
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Assembly of the accelerators Swiss Light Source (PSI, Switzerland), 1999-2000 Duke University synchrotron, USA, 2002-2006 SAGA synchrotron, Japan, 2004 Metrology Light Source, Germany, 2006
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Assembly of the accelerators CERN (channels, coils, magnets..) GSI (channels, coils…)
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