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Machine-Detector Interface |
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Backgrounds Synchrotron radiation, beam-beam backgrounds [pairs, gamma-gamma -> hadrons, beamstrahlung photons], muons, neutrons, extraction line and beamdump albedo, etc. |
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Energy, luminosity spectrum, L(E) Energy spectrometers, Bhabha acollinearity, disrupted energy spectrum, energy bias effects |
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Wed, 01 December 2004 By: mwoods  |
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Polarimetry Upstream and extraction line Compton polarimeters.
Spin transport and depolarization effects. |
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Fri, 01 April 2005 By: mwoods  |
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Very Forward Region Less than ~40 milliradian region. Electron ID and two-photon veto. Fast luminosity monitor, collision diagnostics. |
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Wed, 08 December 2004 By: mwoods  |
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Beam RF effects. EMI (Electromagnetic Interference) for detector and beam instrumenation signal processing. Beampipe heating and resulting backgrounds. |
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Tue, 24 May 2005 By: mwoods  |
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MDI Workshop January 2005 http://www-conf.slac.stanford.edu/mdi/ |
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Wed, 05 January 2005 By: mwoods  |
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Crossing Angles for 2 IRs Many MDI and Beam Delivery topics are relevant for choosing the crossing angles. A matrix/summary of the relevant issues is needed to assist either the "global design team" or the detector collaborations in selecting the IR crossing angles.
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Thu, 20 January 2005 By: robappleby  |
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Physics Options and Detector Concepts. What are the impacts on MDI topics from physics options (Giga-Z, polarized e+, simultaneous running of 2 IRs, gamma-gamma, e-e-). What are the different impacts from the Detector concepts being studied (SiD, Large and HUGE gaseous detectors) e.g. B-field, L*, IR apertures.
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IP collision diagnostics & Lumi optimization. The Very Forward Region detectors are used for luminosity optimization (ex. offsets, waists, dispersion) and diagnostics. |
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Beam Optics Design, Beam Collimation, Final Doublet. These are primarily items for Beam Delivery accelerator physicists. Input from Physics/Detector community is needed to include polarimetry and energy spectrometers; also to set IR apertures, L*.
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Mon, 29 January 2007 By: lens33  |