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Highlights from the Tracking Sessions 12 talks in three sessions Rough accounting: ILD SiD Generic 6 1.54.5 -OR- Gaseous Solid State 4.57.5.

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Presentation on theme: "Highlights from the Tracking Sessions 12 talks in three sessions Rough accounting: ILD SiD Generic 6 1.54.5 -OR- Gaseous Solid State 4.57.5."— Presentation transcript:

1 Highlights from the Tracking Sessions 12 talks in three sessions Rough accounting: ILD SiD Generic 6 1.54.5 -OR- Gaseous Solid State 4.57.5

2 Topics sampled for summary: Results from TPC Large Prototype SiD Tracker Performance (simulation) TPC Pixel Readout TPC Backgrounds Charge Division for Silicon Sensors “Alignment Aware” Si Sensors Plus much more (apologies…)

3 Results from the Large TPC Prototype at DESY Klaus Dehmelt (DESY), Hirotoshi Kuroiwa (KEK)

4 Large TPC prototype 30 cm longitudinal drift Immersed in 1.25 T Bfield Readout: Double/triple GEM MicroMeGas + Resistive Pads Pixels (TimePix)

5 Large TPC prototype 30 cm longitudinal drift Immersed in 1.25 T Bfield Readout: Double/triple GEM MicroMeGas + Resistive Pads Pixels (TimePix)

6 From MediPix to INGRID (Jan Timmermans, NIKHEF) TimePix chip plus deposited grid plus stand-offs: INGRID readout system (gas- gain plus 50  m pixelated readout) Working towards ~10cm x 10cm array Full instrumentation of ILD TPC requires ~10 10 channels (same order as VXD)

7 SiD Tracker Performance (full-ish simulation) Full GEANT simulation plus strategy-based pattern recognition (Richard Partridge)  Near-perfect efficiency over full range in p T, |cos  | Top pair events at E cm = 500 GeV

8 SiD Tracker Performance (full-ish simulation) Momentum resolution probed with single muons Consistent with  (p T ) = 0.2%  2.8  10 -5 p T at 90°

9 Charge Division for Silicon Sensors SCIPP built discrete resistive network (SiD “charge division” sensor not available Benchmark PSpice simulation Observations: Longitudinal resolution independent of R; grows as  C Noise dominated by network, not amplifier Achieve resolution of ~6% of sensor length  Z ~ 6mm for 10cm sensor Jerome Carman (UCSC undergraduate)

10 Alignment-Enabled Sensors (Alberto Ruiz-Jimeno; Cantabria)


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