measurement of bc +, b + production cross section at 7 tev pp collision at cms ictp-ncp school on...
DESCRIPTION
Particle categorization Charged particles measured by tracking Stable or long-lived charged particles(e.g e ±,µ ±,π ±,K ±,P ± ) Charged particles measured by Calorimetery Stable or long-lived neutral particle(e.g γ, k L 0, Neutrons) IHEP CAS, China3 Unstable particles detected by their decay products: ( Ks, Λ and π 0 ) π 0 → γγTRANSCRIPT
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Measurement of Bc+, B+ production Cross Section at 7 TeV pp collision at CMS
ICTP-NCP school on LHC Physics
On behalf of CMS Collaboration November 19th 2014
Ahmad Muhammad
Institute of High Energy Physics, CAS. Beijing, China
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IHEP CAS, China 2
CMS Detector
2014-11-19
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IHEP CAS, China 3
Particle categorization Charged particles measured by tracking Stable or long-lived charged particles(e.g
e± ,µ± ,π±,K±,P± )Charged particles measured by Calorimetery Stable or long-lived neutral particle(e.g γ, kL
0 , Neutrons)
2014-11-19
Unstable particles detected by their decay products:( Ks, Λ and π0 )
π0 → γγ
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High Energy Physics Detector
2014-11-19
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IHEP CAS, China 52014-11-19
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IHEP CAS, China 112014-11-19
B Meson Family
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Bc+(B+)J/+(K+) Cross Section measurement
2014-11-19
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B Meson decays
2014-11-19
J/ is reconstructed by its dimuon decay (+-)
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Introduction With the discoveries of more and more b hadron states
and their decay modes in last two decades, theoretical models provide rich predictions on b hadron production/decay: PYTHIA, perturbative QCD (BcVEGPY generation), … Need precise test by the high luminosity exp. Data.
LHC/CMS is good exp. to perform the test:
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Large production cross section of B hadron: Large B+ sample. Bc contains two different heavy quarks, production is much lower than Bu,d hadron, nevertheless, LHC provided the largest Bc samples in the world.
CMS works in the central kinematic detection region : 0<||<2.4, complementary with LHCb’s measurement.
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Introduction Bc+/B+ cross section ratio and B+ absolute cross section
measurements published so far by the LHC experiments for pp collisions at 7 TeV.
CMS two publications: Phys.Rev.Lett. 106 (2011) 112001 (5.8pb-1, 2010 data) and CMS-PAS-BPH-12-011 (Bc/B+, 2011 data) . ATLAS 2.4fb-1: JHEP10(2013)042.
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This analysis select the similar decay topology of Bc and B+, Bc+J/+ and B+J/K+, to measure the absolute cross section d/dpT and d/d|y|; Use the same analysis strategy. Bc+J/+ absolute production cross section measurement for the first time.
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IHEP CAS, China 162014-11-19
Measurement Strategy
Nsig: Observed Bc(B)J/(K) event number in the given pT or |y| bin.
: the full measurement efficiencies of Bc(B)J/(K) process 。 L: 4.77(14%) fb-1.
Br(J/) = (5.930.06)×10-2 (PDG);
pT(|y|): bin width 2 : accounts for our choices of quoting the Bc+ (B+) cross section..
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Event selection
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Data sample and trigger paths
Used data taken in 2011, start from 1E33 trigger menu. Total integrated luminosity: 4.77(14%) fb-1
Data are pre-selected by the muon displaced trigger with the evolution of trigger menu in 2011 data taking.
The data sets are consistent with Muon T-P analysis of CMS AN-2011-417 2014-11-19
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Muon and J/ Selection
numberOfValidHits >102/ndof<1.8 (track fit)TrackerMuonArbitratedTMOneStationTightpixelLayersWithMeasurement > 1|dB|< 3.0 cm and |dz | <15cmnumberOf ValidMuonHits > 0 (Gmuon) Norm global track 2/ndof<20(Gmuon)
Muon selection as the same as Muon T-P analysis: CMS AN AN-11-417) .
After the pre-selected by the muon displaced trigger with the evolution of trigger, offline J/ reconstruction with cuts of HLT_DoubleMu4_Jpsi_displaced_v1(v4,v5)Keep all the J/(+-) combination.
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J/ mass (2.98, 3.22)
J/ pT > 6.9 GeV/c
J/ Cos > 0.9
J/ Lxy/ >3
J/ LxyDCA < 0.5
J/ VtxCL > 0.15
Use the standard T-P muon selection, and displaced J/ trigger definition of CMS B group to reconstruction J/ decaying from Bc and B+, keep long life time signal, remove the prompt J/ background.
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J/ Signal peak
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J/(K) reconstruction
J/(K) requirement: Cos(J/,K)>0.98 |Y(J/,K)|<1.5, pT(J/,K)>10 5.6< M(Bc) <6.8; 5.0< M(B) <5.55;
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The track and J/ candidate are subjected to the combined vertex and kinematic fit (kinematicConstrainedVertexFitter). VtxPro(J/,K)>0.03, Lxy/σ(J/,K)>4.0
Pion(kaon), muon kinematic selection pT(,K)>2.3 GeV/c Nhit(,K)>10, Phit(,K)>1, /K Norm2<3. pT()>4GeV/c. |()|<2.2
Checked the data/MC consistency, as well as each cut efficiencies ,significance with the Bc MC and real data samples.
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Bc(J/) mass and fit
Gaussian for the signal.
2nd order chybeshev polynomial for BG.
Significance
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/ 11.4S S B
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B (J/K) mass and fit
Signal: three Gaussians.
Bg: Gaussian for B0 et al. Exponential for flat BG.
B J/ is fixed to the parameters obtained from MC.
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B0J/K0(K) et, al.
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Bc mass in pT/|y| bin To calculate the
differential cross section we divide into 3 pT and 3 |y| bins for Bc , 9 pT and 9 |y| bins for B+. Partitioning of pT and |y| bins is done to keep the number of events and statistical close within all bins.
Mass is fixed, resolution is free.
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10<pT<16 16<pT<22 22<pT
0<y<0.5 0.5<y<0.9 0.9<y<1.5
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B mass in 9 pT bins
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Mass is fixed, resolution is free.
Binning selection keep the stat. error of the data/MC samples be in same order with sys. Error.
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B mas in 9 |y| bin
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Mass is fixed, resolution is free.
Binning selection keep the stat. error of the data/MC samples be in same order with sys. Error.
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Bc(B)J/(K) efficiency
2014-11-19
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Efficiencies are computed from a combination of data-driven technique(T&P) and MC simulation.
Efficiency = Acc Total_MC 2 Disp-trigger
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Acc: acceptance 。 Total-MC: MC efficiency except acceptance 。 2mu: : Correction factor for muon trigger, ID , quality requirements. It is the
ratio between real data muon T-P efficiency and MC Muon T-P efficiency.
Disp: Correction factor for the displaced J/ requirement in the analysis. It is the efficiency ratio of displaced J/ cuts between the real data and MC sample.
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MC samples
MC samples are used to calculate the acceptance and parts of efficiencies.
Bc are generated by BCVEGPY, B are generated by PYTHIA.
Samples are published and available at DBS.
Muon Tag&Probe samples of 2011 data were used to calculated the muon efficiency and correction.
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Acceptance: Acc
Use the muon acc. cut “track50” in of muon T-P note AN2011-417. Corresponding T-P samples were used in the analysis for the Moun T-P efficiency calculation.
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Use the MC sample without reconstruction, without any kinematic filter.
/ ( ).
/ ( ).
( )( )
gen B J KPassedAcc cut
gen B J KBeforeAcc cut
N BAccN B
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BcJ/ acceptance
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B+ J/K+ Acceptance
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Ngen(BBJ/(K)
Passed_Acc.cut) : MC generated Bc, B+ events after the Acc. Nreco_match(fit)(BBJ/(K)
Passed_all_cut) : Bc, B+ events after all the cuts, R matched with generated Bc using R.
_ ( ) / ( )_ _
_ / ( )_ ._
( )( )
reco match fit B J KPassed all cuts
Total MC gen B J KPassed Acc cut
N BN B
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Muon Correction Factor/ ( )
/ ( )
(2 _ & _ )(2 _ & _ )
B J K
muonT P B J K
T P DataT P MC
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Correction factor for the muon trigger, ID , quality requirement. Ratio between the real data muon T-P efficiency and MC Muon T-P efficiency.
N(pT, |y|): the number of signal events with two muons within acceptance in Bc (B) pT or |y| bins.
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Muon efficiency
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Muon ID efficiency
Muon quality efficiency
Muon trigger(L1,2,3) efficiency
Muon tracking eff. 99.0(10.01)%
Data MC
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Efficiency = Acc Total_MC 2 Disp-trigger
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Systematic errors
Dependence on signal evt. abstraction: signal model; Bg. model, pT/y binning
Dependence on efficiency: Truth matching; Life time, recon eff., hadronic,Muon tracking; T-P eff. Mialignment. Stat. of MC samples.
Others: Lumi.; Br(J/);
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Systematic errors
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Signal PDF: Bc: 1(2) Gaussian B+: 2(3) Gaussian.
Bg PDF: Bc: 2nd Chebyshev polynomial(exponential) B+: Gaussian+exp. (2 gaussian+ 2nd Chebyshev polynomial)
pT/|y| binning: in each bin, the difference of MC sample fitting results between events number in generator level .
MC truth matching R(Breco, Bgen): difference between event yields between the R match and fitting result. we also study the effect of the deltaR matching and we came with a difference of 76 events (16896 and 16820 after all the cuts with i)deltaR ii)without deltaR)) which is quite small.
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Systematic errors
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Stat . Error of T-P samples and Bc(B+) MC samples: Errors of muon T-P samples are propagated in the Muon correction factor calculation.
Hadron tracking efficiency: 3.9%; Muon tracking: 0.5%. CMS PAS TRK-10-002
Misalignment : 1%. (PRL106(2011)252001, B0J/K0)
Br(J/): 1% (PDG). L: 4%. Bc Life time : The life time PDG(Bc) = 0.452 ± 0.041 ps We reweight our MC sample for 0.411 ps and 0.493 ps .The difference in efficiencies of Bc in both samples is considered
to be systematic of Bc life time (after all the cuts )
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Systematic errors
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The sys. Uncertainties due to the statistic of muon Tag&Probe sample, Bc, B MC samples are not listed in the table. They are included in efficiency error calculation, and taken as the stat. error in the cross section results.
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Bc+J/+ Cross section result
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For Bc pT>10 GeV, |y|<1.5. Errors are stat. errors of real data, MC sample and Muon Tag&proble samples, sys. error
respectively. Br(BcJ/)=0.0013 in the generator. (Large Br. theor. Uncertainty 0.1%-2%) Error of BCVEGPY and PYTHIA is the Br(BcJ/) theoretical error of 0.00130.0008 in
PRD81,014015(2010).
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B+J/K+ Cross section result
2014-11-19
For B+ pT>10 GeV, |y|<1.5. Errors are stat. errors of the real data, MC sample and Muon Tag&proble samples;
sys. Error respectively. Error of PYTHIA is the Br(B+J/K+) error of 0.0010140.000034 in PDG.
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Summary The Bc+J/+ and B+J/K+ differential production cross
section d/dpT, d/d|y| are measured at CMS with 4.8fb-1 7 TeV data.
The B+ cross section measurement are consistent with PYTHIA prediction. Bc d/dpT,d/d|y| shapes are consistent with PYHTIA and BCVEGPY, the cross section values are 3 and 8 times larger than PYTHIA and BCVEGPY (assume Br(BcJ/)=0.0013.)
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For pT(Bc+,B+)>10 GeV, |y(Bc+,b+)|<1.5,
(B+J/K+) =6503.18122.43(stat.)448.72(sys.)pb
pbsys)( 5.25(stat)45.17)J/(Bc 3.03.12-
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Summary We wish these measurements will be helpful to understand Bc (B+) meson production and decay mechanism.
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The Bc+J/+ branching ratio (2%-0.1%); The contributions of the Next leading order Bc production calculation.
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IHEP CAS, China 452014-11-19
Thanks !
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IHEP CAS, China 462014-11-19
Back up
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IHEP CAS, China 47
Bc cross section Results
2014-11-19
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IHEP CAS, China 48
B+ cross section results
2014-11-19
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IHEP CAS, China 49
T-P samples
2014-11-19
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IHEP CAS, China 50
/ ( )
_ / _ / ( )
( _ / _ )( _ / _ )
B J K
Displaced J cut B J K
Displaced J DataDisplaced J MC
2014-11-19
Data
Bc MC B+ MC
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IHEP CAS, China 51
Background PDF systematics
2014-11-19
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IHEP CAS, China 52
MC and real data(Bc)
2014-11-19
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IHEP CAS, China 53
MC and real data(B+)
2014-11-19
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IHEP CAS, China 54
T-P efficiency correction
2014-11-19
Bc
B
/ ( )
/ ( )(2 _ & _ )(2 _ & _ )
muonT PB J K
B J KT P DataT P MC
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IHEP CAS, China 55
/ ( )
_ / _ / ( )
( _ / _ )( _ / _ )
B J K
Displaced J cut B J K
Displaced J DataDisplaced J MC
2014-11-19
Displaced eff. is calculated as the fraction of J/2 events passed displaced J/ cuts and the events passing the prompt trigger.
The average eff. weighted by the int. lumi. of each period run.
Correction for displaced trigger cut
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IHEP CAS, China 56
J/ displaced correction factor
2014-11-19
_ / _
/ ( )
/ ( )
( _ / _ )( _ / _ )
Displaced J cut
B J K
B J K
Displaced J DataDisplaced J MC
Bc
B