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sin2?1 at Belle

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sin2 1 at Belle Masashi Hazumi (KEK) for the Belle Collaboration Outline Status of KEKB and Belle sin2 1 Winter 02 Update Conclusion – PowerPoint PPT presentation

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Title: sin2?1 at Belle


1
sin2?1 at Belle
Masashi Hazumi (KEK) for the Belle
Collaboration
Outline
  • Status of KEKB and Belle
  • sin2?1 Winter 02 Update
  • Conclusion

2
The Belle Collaboration
A World-Wide Activity Involving 50 Institutions
300 members
3
The Belle Collaboration
A World-Wide Activity Involving 50 Institutions
300 members
4
The Belle Collaboration
A World-Wide Activity Involving 50 Institutions
300 members
5
B Factory at KEK 1-page Introduction
8GeV electron
3.5GeV positron
KEKB Collider
6
B Factory at KEK 1-page Introduction
8GeV electron
3.5GeV positron
KEKB Collider
J/? Ks
B
flavor tagging
7
B Factory at KEK 1-page Introduction
8GeV electron
3.5GeV positron
Rate exp(-?t/?B)/2?B ? 1?(?q)sin2?1sin(?m?t)
? CP eigenvalue (e.g. ?1 for J/?Ks) q
Flavor tagging ( 1 for B0-bar(?t))
KEKB Collider
J/? Ks
B
flavor tagging
8
Experimental Challenges
1) Copious B pair production, efficient B
reconstruction 2) Efficient and correct flavor
tagging 3) Observation of time-dependent CP
asymmetry in B decays to a CP eigenstate
with good vertex resolution
?z ? cß??t (200?m at Belle)
9
July 2001 the Beginning of New Age
sin2?1 0.99 ? 0.14(stat) ? 0.06(sys) (Belle,
July 2001)
29.1fb-1 (31.3 million B pairs) PRL 87, 091802
(2001) hep-ex/0202027 (submitted to PRD)
World average (as of July 2001)
sin2?1 0.79 ? 0.10
  • First CPV observed outside the kaon system
  • Strongly support the KM machanism of CPV
  • CP is not an approximate symmetry anymore

10
KEKB Luminosity the worlds best !
  • Peak L 7.25?1033 cm-2s-1 (Mar. 28, 02)
  • Daily Integrated L 387 pb-1/day (May. 11, 02)
  • Weekly Integrated L 2.14 fb-1/week (Apr. 28, 02)

Daily Integrated luminosity history
76fb-1 recorded (May 13,02)
Integrated luminosity history
11
Belle Detector
  • Silicon Vertex Detector (SVD)
  • Impact parameter resolution
  • ? 55?m for p1GeV/c at normal incidence
  • Central Drift Chamber (CDC)
  • (?Pt/Pt)2 (0.0019Pt)2 (0.0034)2 (Pt in
    GeV/c)2
  • K/? separation with
  • dE/dx in CDC (?dE/dx 6.9)
  • TOF (?TOF 95ps)
  • Aerogel Cerenkov (ACC)
  • Efficiency 90,
  • Fake rate 6 up to 3.5GeV/c
  • ?, e? with CsI crystals (ECL)
  • ?E/E 1.8 _at_ E1GeV
  • e? efficiency gt 90
  • (0.3 fake for p gt 1GeV/c)
  • KL and ?? with KLM (RPC chambers)
  • ?? efficiency gt 90
  • (lt2 fake at p gt 1GeV/c)

Quite stable performance up to now
ACC
All components are importantfor the sin2?1
measurement.
12
Belle Detector
  • Silicon Vertex Detector (SVD)
  • Impact parameter resolution
  • ? 55?m for p1GeV/c at normal incidence
  • Central Drift Chamber (CDC)
  • (?Pt/Pt)2 (0.0019Pt)2 (0.0034)2 (Pt in
    GeV/c)2
  • K/? separation with
  • dE/dx in CDC (?dE/dx 6.9)
  • TOF (?TOF 95ps)
  • Aerogel Cerenkov (ACC)
  • Efficiency 90,
  • Fake rate 6 up to 3.5GeV/c
  • ?, e? with CsI crystals (ECL)
  • ?E/E 1.8 _at_ E1GeV
  • e? efficiency gt 90
  • (0.3 fake for p gt 1GeV/c)
  • KL and ?? with KLM (RPC chambers)
  • ?? efficiency gt 90
  • (lt2 fake at p gt 1GeV/c)

Quite stable performance up to now
ACC
All components are importantfor the sin2?1
measurement.
13
Mass Resolutions (1)
J/y ?mm- s9.6MeV/c2
J/y ?ee-(g) s10.7MeV/c2
  • MKp(GeV/c2)

14
Mass Resolutions (2)
?0??? ?4.8MeV/c2
???? ?12.1MeV/c2
Ks??0?0????? ?12.1MeV/c2
15
Fully-reconstructed Event Example
16
sin2?1 Winter 02 Update
Major update ? Summer 2002 (90fb-1)
17
Data Set
2002
Belle 20002001 (41.8fb-1)
(LP01 (published) 29.1fb-1)
18
Reconstruction of CP Eigenstates
Mode of Ev. Purity
J/yKS(pp-) 636 0.95
J/yKS(p0p0) 102 0.80
y(2S)(ll-)KS 49 0.95
y(2S)(J/ypp-)KS 57 0.93
cc1(J/yg)KS 34 0.93
hc(KSKp-)KS 39 0.72
hc(KK-p0)KS 33 0.73
J/yK0(KSp0) 55 0.89
J/yKL 767 0.60
Total 1772
CP-odd (? ?1)
even/odd mix.
CP-even (? 1)
19
All Modes (except B0 ? J/? KL)
B0 ? J/? Ks(???? )
1005 candidates
636 candidates 31 background (Purity 95)
102 cand.
106
34
72
55
B0 ? other modes
369 candidates 59 background (Purity 84)
(DE cut applied)
20
B0 ? J/? KL
  • J/? ?ll? KL
  • 2) Assume B?J/y KL
  • compute PKL
  • 3) Remove reconstructed
  • B ? J/? K, J/? K,
  • 4) Cut on a likelihood
  • based on kinematical
  • and shape quantities
  • 5) Plot P P J/? PKL


B
KL direction 2-body decay kinematics
21
B0 ? J/? KL



PB PJ/y PKL
Belle
run-dep. Ebeam correction
Nsig 462 events
B0 ? J/? KL
Nbkg 305 evts
767 total events 462 signal (Purity 60)
LP01 569 sig. 346 bkg
Total 1772 CP events
1316 LP01
PB(cms)
22
Flavor Tagging (no change from LP01)
Use inclusive flavor-specific properties
  • Inclusive Leptons
  • high-p l? b? c l? n
  • intermed-p l s l? n
  • Inclusive Hadrons
  • high-p p B0?D()? p, D()? r, etc.
  • intermed-p K K X, p?p0
  • low-p p? D0 p?

Also include correlations
23
Belle Flavor Tagging Method
Look-up tables
24
Wrong-tag Fraction Determination
Wrong tag fractions in 6
tagging categories
Flavor specific decays Tagging
B0 ? Dln, D()p/r
(?mixing)
OF - SF
Asym
OF SF
OF Opposite Flavor SF Same Flavor (i.e.
oscillated)
determined by data
Efficiency gt 99.5 e effective 27.0 ? 1.2
25
Related topic Dmd (4 methods)
29.1fb-1 Preliminary (in ps-1)
26
Event-by-event Likelihood
double Gaussian
Taken from data
27
Improved Resolution Functions
  • Separate response functions for vtx with 1-track
    IP constraint and other
  • Outlier treatment
  • Already adopted for the B lifetime analysis

More sensitive to R(Dt)
Simultaneous fit to B0,B-
t(B0) 1.554 0.030 0.019 (ps) t(B) 1.695
0.026 0.015 (ps) t(B) / t(B0) 1.091 0.023
0.014
PRL 88, 171801 (2002)
28
sin2?1 Unbinned Maximum-likelihood Fit
1550 events
1137 LP01
Preliminary
sin2?1 0.82 ? 0.12 (stat) ? 0.05
(sys)

Raw data Asymmetry !
N(qxf-1) - N(qxf1)
N(qxf-1) N(qxf1)
29
sin2?1 Unbinned Maximum-likelihood Fit
1550 events
1137 LP01
Preliminary
sin2?1 0.82 ? 0.12 (stat) ? 0.05
(sys)

Raw data Asymmetry !
N(qxf-1) - N(qxf1)
N(qxf-1) N(qxf1)
30
Raw Asymmetries
CP-1
sin2f1
0.69?
0.15 0.16

opposite!
CP1
1.14?
0.22 0.24
(statistical errors only)
31
Test of Null Asymmetry
use B0?D()-p, D-r, J/yK(Kp-)
sin2f1

0.05?0.04
(statistical error only)
32
sin2?1 from various subsamples






q1 785 evts
q-1 765 evts
(statistical errors only)
33
sin2?1 Systematic Errors
LP01
0.04 0.02 0.01 0.01 0.06
0.024 0.026
0.022 -0.025
0.022 0.019
0.022 -0.032
0.014 0.015
0.007 0.006
0.007 0.006
Preliminary
34
Why better precision required ?
  • sin2?1 in J/? Ks (and related)
  • Insensitive to New Physics Boring ? No !
  • Important as the Standard Model Anchoring Point
  • Combination with other rare-decay CPV a
    promissing road to the Physics beyond the
    Standard Model
  • Examples of rare decays
  • B0??Ks New CPV phase search in penguin decays
  • sin2?1(J/? Ks) sin2?1(?Ks ) ??
  • Talk by K-F. Chen in the hot topics session
    with 73 signal events
  • One of the most important inputs to the CKM fit

35
Conclusion
  • KEKB Great Achievement !
  • Lpeak 7.25 x 1033 cm-2s-1
  • Belle Very Stable Operation
  • sin2?1 0.82 ? 0.12 (stat) ? 0.05 (sys)
    (41.8fb-1)
  • Summer update with 90fb-1 !
  • Test the SM with other CPV in rare B decays !

Exciting time will yet to come !
36
Backup Slides
37
Kobayashi-Maskawa model of CPV
CPV due to the complex phase in CKM matrix

Vtd Vtb

?2
Vud Vub
?1
?3

Vcd Vcb
Unitarity triangle
Physics at Belle
  • Discover CPV in B meson system (done !)
  • Measure CKM elements (angles and lengths) with
    unprecedented precision to overconstrain
  • Beyond the SM (e.g. a new CPV phase)

38
KEKB Luminosity
39
Control Samples
Semileptonic decays B0 ? D (?D0?)l ?
Hadronic decays B0? D()? ,D?
6 x 103 events
D0? K?
D0? K??0
D0? K? ? ?
Used to evaluate performance of flavor tagging
40
Vertex Reconstruction
  • For CP-side, use J/y?ll-
  • Reject poorly fit events.
  • dzCP ? 75 mm (rms)
  • For Tag-side
  • use well fit tracks
  • iterate discard worst track
  • dztag ? 140 mm (rms)
  • Require zCP - ztaglt2mm (10tB)
  • s Dt ? 1.5 ps
  • Tails ? 3 Effic. ? 85

41
J/?K Transversity Analysis
B ? VV usable !
(See BELLE-CONF-0105)
Psig(Dt, qtr ) (1-RT)PCP-1 (1cos2 qtr) 3/8
RT PCP1 (sin2 qtr) 3/4
42
B0??Ks Time-dependent CPV
Motivation
B0? J/? Ks
c
b
c
w
s
ACP(?t) ?f sin2?1sin(?md?t)
  • Precise measurement of CPV in penguin decays a
    powerful tool to search for a new CPV phase
    beyond the Standard Model (SM)
  • Large branching fractions for inclusive and
    exclusive B ? ? transition may be a hint.

43
B0??Ks Time-dependent CPV
Motivation
B0? J/? Ks
c
b
c
w
s
ACP(?t) ?f sin2?1sin(?md?t)
  • Precise measurement of CPV in penguin decays a
    powerful tool to search for a new CPV phase
    beyond the Standard Model (SM)
  • Large branching fractions for inclusive and
    exclusive B ? ? transition may be a hint.

44
B0??Ks Time-dependent CPV
Motivation
B0? J/? Ks
c
b
c
w
s
ACP(?t) ?f sin2?1sin(?md?t)
  • Precise measurement of CPV in penguin decays a
    powerful tool to search for a new CPV phase
    beyond the Standard Model (SM)
  • Large branching fractions for inclusive and
    exclusive B ? ? transition may be a hint.

45
Reconstruction
Belle 41.8fb-1
B
B0 Yields N(?? Ks) 45.5 N(???
Ks) 27.7
8.6 -7.9
???
6.2 -5.5
More will be given in the hot topic session
(K-F. Chen)
B0
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