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Janusz.Harasimowicz@quasar-group.org www.quasar-group.org USR Beam Instrumentation Janusz Harasimowicz Joint QUASAR and THz Group Workshop on Accelerator Science and Technology 9 Sep 2009
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Janusz Harasimowicz: USR Beam Instrumentation2 Ultra-low Energy Storage Ring Energy300 keV → 20 keV Revolution frequency 178 kHz → 46 kHz # of particles~10 8 → ~10 7 Bunch length1 ns – DC beam Effective pbar rates for in-ring experiments 10 10 pps – 10 12 pps Average rates of extracted pbars 5x10 5 pps – 10 6 pps Beam diameter5 mm – 20 mm ANTIPROTONS
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9 Sep 2009Janusz Harasimowicz: USR Beam Instrumentation3 Faraday cup Destructive beam current measurements Collection of secondary particles (total charge) Secondary electrons Annihilation products: MeV-scale charged pions and recoil ions Expected beam intensities AC mode: ~100 nA p-p Quasi-DC mode: ~100 fA
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9 Sep 2009Janusz Harasimowicz: USR Beam Instrumentation4 Faraday cup
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9 Sep 2009Janusz Harasimowicz: USR Beam Instrumentation5 Faraday cup DC and AC mode Current down to ~100 fA Low noise cables and connectors Movable device UHV system (10 -11 mbar and ~250 ° C baking)
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9 Sep 2009Janusz Harasimowicz: USR Beam Instrumentation6 Capacitive pick-up Non-destructive beam position measurements RC circuit Expected signal ΣU: ~150 µV p-p ΔU (1 mm): ~3 µV p-p x C C R R
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9 Sep 2009Janusz Harasimowicz: USR Beam Instrumentation7 Expected signal
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9 Sep 2009Janusz Harasimowicz: USR Beam Instrumentation8 Resonant capacitive PU But…
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9 Sep 2009Janusz Harasimowicz: USR Beam Instrumentation9 Coupling capacitance ΔU(0.1 mm, 1.78 MHz) = 16 μV ΔU(0.1 mm, 1.78 MHz) = 4 μV No C c C c = 10 pF I p = 500 nA, R = 1 MΩ, C g = 100 pF, L = 80 μH, R L = 50 Ω Increases with the increasing Q-factor Does not improve considerably with the Q-factor
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9 Sep 2009Janusz Harasimowicz: USR Beam Instrumentation10 Capacitive PU Narrowband signal processing + averaging (closed orbit) Additional coil to improve S/N ratio? Plates decoupling High Q-factor
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9 Sep 2009Janusz Harasimowicz: USR Beam Instrumentation11 Beam profile monitor Destructive beam profile measurements Detector type: Scintillating screen? Secondary electron emission monitor? Silicon detector? Expected intensities Fast mode: ~10 7 particles in ~20 μs (~100 nA p-p ) Slow mode: ~5 x 10 5 pps (~100 fA DC ) Preliminary tests with a thin scintillator 180 keV protons Ø 1 mm 25 frames/s ~1 pA 20 keV protons several cm 2 ~100 pA
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9 Sep 2009Janusz Harasimowicz: USR Beam Instrumentation12 Summary Faraday cup Low current (100 fA) measurements under UHV Capacitive pick-up Low differential signal (~1 μV) Scintillating screen Low number of particles (~5 x 10 5 pps) Large beam spread (Ø 20 mm) Low energy (20 keV)
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