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Published byShawn Nicholson Modified over 9 years ago
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July 15, 2009 Interferometer Installation Report Mike Hildreth, Kurt Jung, Mickey McDonald Université de Notre Dame du Lac
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(1)Schematic Full System (Later): –monitor relative (later, absolute) vertical positions of the two IP Steering feedback BPMs Optical path: –This installation July 15, 2009 QD10BQD10AQM11QM12QM13QM14 BPMBPM MFB2 Optical Path
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(2)Photos July 15, 2009 laser interferometer retroreflector student CCD camera
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(3) More Photos July 15, 2009 interferometer retroreflector CCD camera view from aisle sideview from cable tray side
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(4) More Photos July 15, 2009 2 PCs, one for laser, one for CCDs VME crate for interferometer DAQ
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(5) Initial Data: BPM Vibration July 15, 2009 time (sec)BPM position (nm) 35 nm rms points every 1ms projection points every 1ms time (sec)BPM position (nm)
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(6) Initial Data: Overnight Stability July 15, 2009 time (sec) BPM position (nm) 1m1m Scatter around Central value RMS: 41nm
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(7) ~One Hour run today July 15, 2009 time (sec)BPM position (nm) RMS: 46nm
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(8) Camera Data from Today July 15, 2009 x(1) – x(2) (microns)y(1) – y(2) (microns)
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(9)Status Interferometer & Camera systems aligned and ready to record data DAQ problems solved –(needed TTL trigger input; used NIM converter module) –DAQ now in final configuration for data-taking For each beam pulse, we will take 3 interferometer points spaced by 0.5 ms after Kicker Fire Pre-Trigger camera data will be updated every 30 seconds with an average position computed in the DAQ –One Remaining Issue: Define and test PV read/write/log with EPICS IOC Domo Arigato Gozaimasu to Terunuma-san and the KEK Team for all of their help! July 15, 2009
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(10) MFB2 Installation Plan (TBC) July 15, 2009 QM13 Laser CCD Camera Honeycomb Optical Table (ND supplied) FFTB Mover
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(11) plan view: July 15, 2009 75cm 90cm Beam FFTB mover plate BPM Laser
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