1 / 19

B -> Baryon decays in Belle

B -> Baryon decays in Belle. Sheng-Wen Lin National Taiwan University. eric@hep1.phys.ntu.edu.tw. Introduction. B meson can decay into baryonic final states due to its heavy mass, through b-> cW, b-> uW and b-> s gamma … There are several theoretical models to predict BRs. Topics

nimrod
Download Presentation

B -> Baryon decays in Belle

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. B -> Baryon decays in Belle Sheng-Wen Lin National Taiwan University eric@hep1.phys.ntu.edu.tw Moriond QCD

  2. Introduction • B meson can decay into baryonic final states due to its heavy mass, through b-> cW, b-> uW and b-> s gamma… • There are several theoretical models to predict BRs. • Topics 1.BR. Measurements for charmless and charmed decays New baryonic B decays through b-> s gamma and b->c(cs) 2.Low mass enhancements in 3-body charmless baryonic decays Decay angle distribution  fragmentation picture 3.Glueball search 4.Study of J/ψ  pp and ΛΛin B  J/ψK decay 5.Intermediate states Observation only in the charmed baryonic decays Moriond QCD

  3. sss Status of charmless baryonic B decays HFAG sg 3-body suu sdd uud 3-body suu dss 2-body uud UL updated Moriond QCD

  4. bsγMC +7.1- 6.6 +0.58- 0.53 B+pΛγ 140fb-1 Mbc=(Ebeam2-PB2)1/2 • PRL 95, 061802, 2005Simultaneous fit to BpΛγ and BpΣ0γSignal Yield for BpΛγ with MpΛ<2.4GeV/c2: 34.1 • Statistical Significance: 8.6σ • BF(BpΛγ ): 2.16 ± 0.20x10-6BF(BpΣ0γ):<4.6 x 10-6 ΔE=EB-Ebeam pΛγSignal Moriond QCD

  5. Angular distribution Fit results in bins of cosθX with MpΛ<4.0GeV/c2 (Assuming XpΛ, calculated in X rest frame.) X frame γ qq background θx p Signal Yield Λ +0.23 -0.20 A=(N+/N-)/(N+-N-)= 0.36 Short-distance bsγ Moriond QCD

  6. Threshold Enhancements in b->s and b-> u modes 140fb-1 • PLB 617, 141-149, 2005 p- ppK+ ppK0S Moriond QCD

  7. Angular distribution: ppK+(b->s mode) p Өp X K+ bs dominant process Fragmentation picture p in pp rest frame s u K+ p u d u u s u u d p ppK signal Moriond QCD

  8. p p π- Өp Өp X X Λ in pπ- rest frame π- Λ Angular distribution: pΛπ-(b->u mode) in pΛ rest frame Fragmentation picture Moriond QCD

  9. Glueball Search in B->K p p The theoretician suggest a possible glueball resonance with mass around 2.3GeV/c2(PLB 544, 139, 2002) Scanning the mass region from 2.2 to 2.4 GeV/c2 No significant signal is found. We set a 90% confidence-level upper limit:BF(B+ glueball K+) x BF( glueball  pp) < 4.1x10-7 Moriond QCD

  10. J/Ψ helicity angle definition In general, the angular distribution of J/Ψ baryon anti-baryon pair can be written as θ : helicity angle α : constant baryon θ anti-baryon J/Ψ momentum direction Moriond QCD

  11. J / Ψ →p p helicity angle distribution 357fb-1 Likelihood fit ※Efficiency corrected Moriond QCD

  12. First observation of ηc → ΛΛ Significance = 8.1σ Yield = 19.5 +5.1 -4.4 +0.09 -0.14 +0.24 -0.21 BR (ηc->ΛΛ) = 0.87 (stat.) (syst.) ±0.27(PDG)x 10 -3 Moriond QCD

  13. cud cud ccs Status of charmed baryonic B decays Br=1% Br=10% 2-body 3-body 4-body 3-body 2-body Moriond QCD

  14. Br(B+Xc0Lc+)x Br(Xc0X+p-) = +1.0 -0.9 (4.8 ±1.1±1.2)x10-5 bkgnd +0.56 -0.49 Br(B0Lc+ p) =(2.19 ±0.32±0.57)x10-5 PRL90(03)121802 B+/0Xc0Lc+ p0/-, B0/+Xc0Sc0/+, Sc0/+Lc+p -/0 357fb-1 B+ Xc0Lc+ 29 evnts 8.7 s Br  a few 10-3 if Br(Xc0X-p+) ~ 1% ( NP B345 (97) 137 ) Large Br as 2-body decay M(Lc+) M(Xc0) Moriond QCD

  15. B0 Xc-Lc+ +0.56 -0.49 Br(B0Lc+ p) =(2.19 ±0.32±0.57)x10-5 PRL90(03)121802 357fb-1 Br(B0Xc-Lc+)x Br(Xc+X-p+p+) = 9 evnts 3.8s +3.7 -2.8 ( 9.3 ±1.9±2.2 )x10-5 Br ~ a few 10-3 if Br(Xc+X-p+p+) ~ 1%. M(Lc+) M(Xc-) Moriond QCD

  16. B-J/yL p Br( B-J/yL p ) = Br( B-J/yS0 p ) Br( B0J/y p p ) 253fb-1 DMB=Mrec(B)-MB 17.2±4.1 events 11.1s 11.6 ±2.8(stat) (sys) x10-6 +1.8 -2.3 DMB Mbc Mbc 2-body invariant masses < 1.1x10-5 < 8.3x10-7 UL at 90% CL Moriond QCD

  17. M(Lc-Lc+) +1.0 -0.9 Br=(6.5 ±0.8±3.4)x10-4 357fb-1 B- Lc-Lc+ K- 48.5 events 15.4s M(Lc-) M(Lc+) Moriond QCD

  18. B0 Lc-Lc+ K0 +2.9 -2.3 Br=(7.9 ±1.2±4.2)x10-4 M(Lc-Lc+) 357fb-1 10.5 evts 6.6s hep-ex/0508015 M(Lc-) M(Lc+) Moriond QCD

  19. Summary Charmless baryonic decays : • BF(2-body) < BF(3-body) • Low mass enhancement of di-baryon and decay angle distribution supports fragmentation picture • Observation of B+pΛγ(b -> sγ mode) Charm baryonic decays : BF(2-body) < BF(3-body) < BF(4-body) Observation of double charmed decays Moriond QCD

More Related