Rick Van Kooten
Indiana University High Energy Physics

Linear Collider Higgs Studies
Talk to Linear Collider Detector (LCD) Working
Group
SLAC, 14 Nov. 2000
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Cover
Page and Outline
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Higgs
Properties: What we want to know
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Berkeley
Plans I
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Berkeley
Plans II
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What
has changed?
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Direct SM Higgs LEP2
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Higgs
reach at FNAL
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MSSM
Mixing and where we are re: decoupling regime, with LEP2 overlay
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Benchmark,
tracking momentum resolution: Mass measurement: Recoil mass from leptons,
Higgstrahlung mode
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Update
of above
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Benchmark,
dijet invariant mass resolution: Mass measurement: Direct reconstruction
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LCD: Frey et al.: energy flow1
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LCD: Frey et al.: energy flow2
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Benchmark,
jet energy resolution: Mass measurement: Recoil mass from jets, both fusion
and Higgsstrahlung
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Benchmark,
jet energy resolution: Mass measurement: Recoil mass from jets, fusion
mode
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Mass measurement: Threshold
scan
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Benchmark
vertexing, Branching Ratios Measurement: advanced tagging techniques
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Branching
Ratios Measurement: results, Battaglia
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LCD: Brau et al.:
simulations
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LCD: Brau et al.: tagging
efficiencies
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LCD: Brau et al.: Br errors
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Variation of tagging efficiency
with jet energy, S. Xella
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Benchmark electromagnetic
energy resolution, Branching Ratio: Higgs to gamma-gamma
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TESLA gamma-gamma resolution
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...and updated
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Invisible decays
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TESLA precision, invisible decays
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Total Higgs Width:
LEP2 implications?
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Measuring Spin, Parity
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Yukawa coupling to top: radiative
production tth
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tth Results: Dawson
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Experimental
Issues I
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Experimental
Issues II
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Determining
CP nature (~skip)
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Higgs
Potential: high lumi measurement (~skip)
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Status/plans
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Detector benchmarking
1
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Detector benchmarking
2
This file is http://needmore.physics.indiana.edu/~rickv/nlc/talks/LCD/lcd_talk.html
Last updated: 14 Nov. 2000
Rick
Van Kooten , rickv@paoli.physics.indiana.edu