1 / 18

CHARM MIXING and lifetimes

CHARM MIXING and lifetimes. at. Alexis POMPILI. Università and I.N.F.N. Bari. on behalf of the BaBar Collaboration XXXVIIth Rencontres de Moriond - March 11th, 2002. Search for lifetime differences in D 0 decays New BaBar limits on D 0 mixing parameter y :

jerry
Download Presentation

CHARM MIXING and lifetimes

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. CHARM MIXINGand lifetimes at Alexis POMPILI Università and I.N.F.N. Bari on behalf of the BaBar Collaboration XXXVIIth Rencontres de Moriond-March 11th, 2002 Search for lifetime differences in D0 decays New BaBar limits on D0 mixing parameter y: - method and event selection - lifetime extraction, systematics and results

  2. INTRODUCTION:x, y (flavour eigenstates) Mass eigenstates: masses: M1 , M2&widths: G1 , G2 MIXING PARAMETERS: New Physics can significantly enhancex In the SM : …but … FSI and SU(3) breaking can enhance y Current sensitivy @ level of 10-2 (few 10-3 with 0.5ab –1 @ Belle & BaBar ) HADRONIC 3 types of experiments are sensitive to a combination of x & y : Wrong-sign searches : Semileptonic LIFETIME DIFFERENCE searches 2 Alexis Pompili(Univ. & INFN Bari)XXXVIIth Rencontres de Moriond

  3. Lifetime difference search strategy Rate asymmetry for neutral D decays into CP+(even) and CP- (odd) eigenstates : K-K+ (p-p+) is CP+ eigenstate & K-p+assumed an equal mixture of CP+, CP- Extracting the rates by fitting to pure exp. the time-dependent rates: NO CP CP in interference mixing-decay CP in mixing 3 Alexis Pompili(Univ. & INFN Bari)XXXVIIth Rencontres de Moriond

  4. D0 proper time reconstruction method Reconstructed DECAY CHAIN TAG 3 independent samples D*is primary vertex : use BS -constraint 1) allows flavor-tagging dm = m(h+h-ps) - m(h+h-) 2) reduces BKG Refitting technique with BS - constraint improvesdm resolution tDinxy Beamspot DECAY LENGTH 4 Alexis Pompili(Univ. & INFN Bari)XXXVIIth Rencontres de Moriond

  5. D0 candidates selection criteria This analysis uses 57.8 fb-1 (2000+2001 data) & selects events from continuum It uses alsosimulated (G4) data : Tracking [DCH+SVT], vertexing[SVT], PID [DIRC+(DCH+SVT)] are crucial GOOD QUALITY TRACKS & VERTEXING RESOLUTION (at least6 SVT-hits forps) GOOD VERTEX FITfor BOTH D0 and D* vertices : REJECTION of D* from B decays: ONLY PARTICLE IDENTIFICATION applied on BOTH D0 DAUGHTERS K : tight likelihood selection ( pion contamination: <3% for p<3GeV/c ) p : likelihood selection & muon veto REJECTION of combinatorial BKG due to low p pions : helicity-cut on dm-cut : 5 Alexis Pompili(Univ. & INFN Bari)XXXVIIth Rencontres de Moriond

  6. m(h+h-) dm=m(h+h-ps)-m(h+h-) Selected D0 candidates after dm-cut K-p+ K-K+ K-p+ p-p+ K-p+ 6 Alexis Pompili(Univ. & INFN Bari)XXXVIIth Rencontres de Moriond

  7. Unbinned maximum likelihood fit S1 S2 s3 tD (1-f2)(1-f3) + f2(1-f3) + f3 Psig(mi) SIGNAL proper-time RESOLUTION tBKG e BUT with ... SBKG S1 + f0(1-f4) (1-f0) SBKG S2 NO-flying BKG [1-Psig(mi)] flying BKG s3 s4 fixed BKG f0f4 for tails 7 Alexis Pompili(Univ. & INFN Bari)XXXVIIth Rencontres de Moriond

  8. D0 candidate signal probabilityin the lifetime fit “sidebands”candidates as part of likelihood fit BKG constrained in data K-p+ LOW MASS TAIL K-p+ Portion assigned to BKG K-p+ K-K+ p-p+ 8 Alexis Pompili(Univ. & INFN Bari)XXXVIIth Rencontres de Moriond

  9. Proper time distributions and lifetime fit results p-p+ K-p+ K-K+ Points : DATA|White histogram : FIT RESULT|Gray histogram : BKG fit portion 9 Alexis Pompili(Univ. & INFN Bari)XXXVIIth Rencontres de Moriond

  10. Lifetime ratio systematics -I D0 lifetime measurement is an HIGH PRECISION measurement [ statistical uncertainty for our data sample is about 1.3fs namely 3/1000 ] At this level of precision wide studies of systematics sources (tracking, vertexing, alignment) are needed. Note: - 1.5mm average bias in vertex position translates in 3fs lifetime bias - 1MeV mass shift due to momentum bias means 0.3fs lifetime bias At this stage we do not present an absolute D0 lifetime value becausethe overall systematic uncertainty (about 3-4fs) can be reduced with further work We checked, on a limited sub-sample, the full compatibility of the fit result with both our HF2001 check and PDG value Many systematics effects on lifetime cancel in the lifetime RATIO 10 Alexis Pompili(Univ. & INFN Bari)XXXVIIth Rencontres de Moriond

  11. Lifetime ratio systematics -II y systematics uncertainties calculated using large signal MC samples • Simulated data has been modified by variation reflectinguncertainties in… • detector biases • event selection criteria • size and composition of BKG contribution • - beamspot position and size SVT internal alignment systematic checks done using [zero lifetime control sample] MC estimation shows about null bias within its statistical error which is taken as a fur- ther systematic uncertainty 11 Alexis Pompili(Univ. & INFN Bari)XXXVIIth Rencontres de Moriond

  12. RESULTS: limitsony PRELIMINARY EPS-2001 12 Alexis Pompili(Univ. & INFN Bari)XXXVIIth Rencontres de Moriond

  13. CONCLUSIONS AND NEAR TERM PROSPECTS Our preliminary y measurement is consistent with zerobut suggest a positive value not incompatible with FOCUS measurement It is crucial to get a new measurement over LARGER DATA SAMPLES It is important to get a result from D*-untagged KK sample : the statistical uncertainty is <1% but still working on systematics Limits on x, y from hadronic wrong-sign analysis coming soon ! 13 Alexis Pompili(Univ. & INFN Bari)XXXVIIth Rencontres de Moriond

  14. BACKUP TRANSPARENCIES (NOT SHOWN)

  15. Wrong-sign hadronic search strategy Type of experiment sensitive to (xcosd + ysind) cosf , (ycosd -xsind) sinf , x2 +y2 x’ y’ • : strongphase diff.between DCSD & CF Look for deviation from exp in the time evolution of neutral D wrong-sign decay : D*+ D0(cu) p+ NO CP DCSD INTERFERENCE MIXING DCSD MIXING HF9 CFD D0 K+p- 1+ Alexis Pompili(Univ. & INFN Bari)XXXVIIth Rencontres de Moriond

  16. Kaon ID performance < Efficiency > < Mis-ID > 2+ Alexis Pompili(Univ. & INFN Bari)XXXVIIth Rencontres de Moriond

  17. Low mass tail MC study: possible explanation is internal bremsstrahlung Simulation by randomly selecting 5% of D0 candidates for which one daughter’s momentum is correctedby the factor [1-(Eg/mD)] where energy Eg is properly randomly generated. 3+ Alexis Pompili(Univ. & INFN Bari)XXXVIIth Rencontres de Moriond

  18. MC check : lifetime pull The resolution model is found to fit reasonably well to the MC MC indicates very little or null bias (meas. – true) pr. time /pr. time error (measured – true) proper time 4+ Alexis Pompili(Univ. & INFN Bari)XXXVIIth Rencontres de Moriond

More Related