Blessing of Run II Diffractive Results
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Transcript of Blessing of Run II Diffractive Results
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M. Gallinaro, `` RunII Diffractive Results: Blessing'' - QCD meeting, March 7, 2003
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Blessing of
Run II Diffractive Results
IntroductionData SelectionPlots for
Blessing
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M. Gallinaro, `` RunII Diffractive Results: Blessing'' - QCD meeting, March 7, 2003
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Forward Physics
• Hard Single Diffraction• Double Pomeron Exchange• …
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M. Gallinaro, `` RunII Diffractive Results: Blessing'' - QCD meeting, March 7, 2003
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Diffractive Dijets
• Compare diffractive events to ND• Measure diffractive structure
function
from RSD/ND vs x bj
Measure pbar momentum loss fraction)from calorimeter information
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M. Gallinaro, `` RunII Diffractive Results: Blessing'' - QCD meeting, March 7, 2003
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Momentum Loss Fraction
Diffractive events are boosted towards positive
small
Measure fractional momentum loss of anti-proton
MX 2
s
=yln (1/
e
s
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M. Gallinaro, `` RunII Diffractive Results: Blessing'' - QCD meeting, March 7, 2003
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Trigger
• RP is triggered on leading antiprotons• Use RP + jet triggers
require jets
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M. Gallinaro, `` RunII Diffractive Results: Blessing'' - QCD meeting, March 7, 2003
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Data Sample
• Use dedicated diffractive triggers
RP+J5 (diffractive sample)
J5 (control sample)
• Data sample ~9 pb-1
(PHYSICS_1_03_v1)
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M. Gallinaro, `` RunII Diffractive Results: Blessing'' - QCD meeting, March 7, 2003
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Event Selection
1. Triggered events 352,359
2. MET Significance<6 352,359
3. Two jets (ET>5, |<2.5) 175,292
4. RP coincidence 168,153
5. SD (0.02< <0.1) 15,209
6. All BSC East Gap 1,126
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M. Gallinaro, `` RunII Diffractive Results: Blessing'' - QCD meeting, March 7, 2003
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Question #4
Q : What is the ratio SD/ND for ET > 10 GeV
?
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M. Gallinaro, `` RunII Diffractive Results: Blessing'' - QCD meeting, March 7, 2003
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DSF with Jet ET cut
ET* =
ET1 + ET
2
2
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M. Gallinaro, `` RunII Diffractive Results: Blessing'' - QCD meeting, March 7, 2003
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Q2 Dependence
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Answer to Q#4
A : Slope and normalization change by ~ 1% .
Q : What is the ratio SD/ND for ET > 10 GeV
?
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M. Gallinaro, `` RunII Diffractive Results: Blessing'' - QCD meeting, March 7, 2003
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Plots For Blessing
Suggested modifications have been implemented
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M. Gallinaro, `` RunII Diffractive Results: Blessing'' - QCD meeting, March 7, 2003
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Distribution
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Rapidity
Run I PRL
Diffractive dijets are boosted away from the recoil antiproton
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Mean Dijet ET
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jet1-jet2)
Diffractive dijets are more back to back
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MP Multiplicity
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Diffractive Structure Function
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Diffractive Structure Function (II)
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East Multiplicity: BSC vs MP
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M. Gallinaro, `` RunII Diffractive Results: Blessing'' - QCD meeting, March 7, 2003
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DPE Enhanced Sample
• Study a dedicated DPE trigger (RP+J5+GapE)
• ~300 k events
• ET(jet1,2)>5 GeV
• |(jet1,2(,3))|< 2.5
• (0,0) bin ~ 16,000 events (in Run I: 100 evts)
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M. Gallinaro, `` RunII Diffractive Results: Blessing'' - QCD meeting, March 7, 2003
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jet1-jet2)
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Dijet Mean Rapidity
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Jet Transverse Energy
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M. Gallinaro, `` RunII Diffractive Results: Blessing'' - QCD meeting, March 7, 2003
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Conclusions
Relax, it is only physics.
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Question # 1
Q : Is the BG peak at ~ 1 due to overlap events from multiple
interactions?
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M. Gallinaro, `` RunII Diffractive Results: Blessing'' - QCD meeting, March 7, 2003
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Distribution
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Luminosity Dependence
Luminosity: 1.0 E31 1.5 E31 2.3 E31
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M. Gallinaro, `` RunII Diffractive Results: Blessing'' - QCD meeting, March 7, 2003
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Overlap Rate
ND (1 - e- n RP) + SD (1 - e- n )
SD e- n
R (ND/SD) =
J5 x RP overlap SD x MB overlap
nRP= ( 1 mb/50 mb) x n , n = 0.3 x L[1 x E31]
ND / SD ~ 600
R (ND/SD) = 12 n e n
SD surviving MB overlap
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Multiple Interactions Shift ND Peak
R vs log (1 + n )
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M. Gallinaro, `` RunII Diffractive Results: Blessing'' - QCD meeting, March 7, 2003
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Run I vs Run II
Run I Run II
L um / bunch 0.16E30 / 6 20.0E30 / 36
ND / SD 300 (lower jet ET)
600 R (Run I/Run II ) = 1/60
R (Run II) = 10 R (Run I) =
0.15
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Multiple Interactions
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Answer to Q# 1
A : Yes.
1. Ratio is consistent with Run I numbers and Run II expectations.
2. Peak at ~ 1 shifts according to luminosity, as expected.
Q : Is the BG peak at ~ 1 due to overlap events from multiple
interactions?
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Question #2
Q : What is the effect of the MP energy scale calibration ?
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M. Gallinaro, `` RunII Diffractive Results: Blessing'' - QCD meeting, March 7, 2003
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MP Calibration
• Use slope from ADC distribution
• Tower-to-tower relative calibration with data/MC
• Energy scale from MC
• MC/MBR
Pile-up at high luminosity
(Slope-Fit)/Fit ~7%for each ring
Time dependence (LED)
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MP Multiplicity
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MP Contribution to ND
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Effect of MP Energy Scale
E = +/- 25%
log = +/- 0.1
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Answer to Q#2
A : An energy scale variation of +/- 25% yields
log = +/- 0.1.
1. log =0.1 is the bin width of our distribution .
2. Peak position in data is centered where expected, indicating the energy scale uncertainty is < 25% .
Q : What is the effect of the MP energy scale calibration ?
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Question #3
Q : What is the background in the RP inclusive rate ?
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RP Inclusive Data
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Zero Crossings
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Answer to Q#3
Q : What is the background in the RP inclusive rate ?
A : It is 1-2% of all RP triggers, concentrated at log < - 3