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CDF%20hot%20topics

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CDF hot topics Sandro De Cecco FNAL & INFN Roma 1 Outline Tevatron performances Tevatron performances B Physics at pp collider B physics triggers at CDF II Mixing ... – PowerPoint PPT presentation

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Title: CDF%20hot%20topics


1
CDF hot topics
Sandro De Cecco FNAL INFN Roma 1
2
Outline
  • Tevatron performances
  • CDF detector and B physics triggers
  • Recent and new results
  • Bs mixing
  • b-hadrons Lifetimes DGs/Gs
  • Lb modes
  • Charmless Bd,s decays
  • Rare decays
  • Summary and perspectives

3
Tevatron performances
  • CDF II has collected so far 0.8 fb-1 out of gt1
    fb-1 delivered by Tevatron.
  • Record peak luminosity is 1.31032 cm-2s-1
  • Around 600 pb-1 are available for B physics (good
    tracking detector conditions)
  • Current analyses use 180 - 350 pb-1 of integrated
    luminosity

Right on the track of stretched TeV plans
1 fb-1 !
4
The CDF II detector
CDF Tracking System
Particle ID
Lepton ID
Muons CMU, CMP, CMX (?lt1.1)
  • dE/dX in COT

Electrons CEM (EM calorimeter) CPR
(pre-shower detector)
  • Time Of Flight detector

5
B Physics at pp collider
  • All B species produced
  • Bu,Bd,Bs,Bc,?b, ?b
  • With production fractions
  • fu fd fs fL 4 4 1 1
  • Acceptance for other B is 20-40

BUT ?(bb) ltlt ?(pp) (65 mb) ? B have to be
selected with specific Triggers
the Secondary Vertex Trigger SVT
Example
  • Online (L2) selection of displaced tracks
  • based on Silicon detector hits.

? see talk by Mauro DellOrso
  • b production is so large (300 Hz _at_ 1032 cm-2 Hz)
    that we could not even cope with writing it all
    to tape! ? trigger quasi-exclusively on specific
    decay modes

6
B physics triggers at CDF II
Conventional at colliders (Run I)
With SVT trigger
2-Displaced tracks PT(trk) gt 2 GeV 120 ?m lt
I.P.(trk) lt 1mm SpT gt 5.5 GeV fully hadronic
modes
1-Displaced track lepton (e, ?) 120 ?m lt
I.P.(trk) lt 1mm PT(lepton) gt 4 GeV Semileptonic
modes
Di-Muon (J/?) Pt(?) gt 1.5 GeV J/? modes down to
low Pt(J/?)0 (Run II)

7
Mixing
8
Bs Mixing
but VtsgtgtVtd ? DmsgtgtDmd
Measuring Dms/Dmd determines Vts/Vtd Lattice
calculation error O(5)
Fit with all constraints (winter 05) ? 0.190
0.044 ? 0.349 0.024
WA experimental limit Dms gt 14.5 ps-1
(95CL) (LEPSLDCDF 1)
9
SM CKM-fit prediction for Dms
SM
New Physics models can allow high Dms
(with all constraints)
(?ms not used)
compatibility plot
Dms 18.9 1.6 ps-1 15.7, 23.0 _at_ 95 CL
?ms 20.5 3.2 ps-1 14.4, 27.1 _at_ 95 CL
If Dms gt 30 ps-1 New Physics _at_ 3s
10
Analysis Strategy
  • Bs signal reconstruction
  • Flavour specific states
  • Bs decay time
  • proper time reconstruction
  • Lifetime measurement
  • Initial flavour of the Bs
  • Flavour tagging techniques
  • calibrate on Bd mixing

B0 A-scan
? B0 Mixing perform a Blind AMPLITUDE SCAN
A
Dmd 0.5ps-1 ? A 1
11
Two different Bs signatures
Fully reconstructed HADRONIC modes
  • Good proper time resolution
  • High Bs mass resolution
  • Selected by Two Track Trigger (SVT)

SEMILEPTONIC modes
  • Missing momentum carried by the n
  • Diluted proper time resolution
  • Selected by dedicated trigger (lSVT)

12
Flavour tagging
Same Side
Opposite Side
Used for today results
Jet Charge the sum of charges of the b-Jet
tracks correlated to the b-flavour
Soft Lepton (e,m) due to b?lnX l charge
correlated to b-flavour
NOT yet used
Same Side Kaon for B0s is likely to have close
in DR a K. High eD2 is expected
Muon Tag
Calibrate the OS taggers on B0 mixing ?
HADRONIC SEMILEPTONIC
Dmd (0.5030.0630.015) ps-1 (0.4980.0280.015) ps-1
Tot. eD2 (1.120.23) (1.430.09)
13
Bs Amplitude Scan results
Semileptonic
  • Sensitivity 8.4 ps-1
  • Limit Dms gt 7.9 ps-1 _at_ 95 CL

Semileptonic
Hadronic
  • Sensitivity 0.4 ps-1
  • Limit Dms gt 0 ps-1 _at_ 95 CL

Hadronic
CDF winter 05 Combined
  • Sensitivity 8.4 ps-1
  • Limit Dms gt 7.9 ps-1 _at_ 95 CL
  • World Average CDF Run II
  • Sensitivity 18.2 ?18.6 ps-1
  • Limit 14.5 ps-1

? see talk by Marco Rescigno
14
Near future for Dms
  • With the SAME data
  • Add new tagging algorithms Same Side Kaon Tag
  • Add more channels
  • Add signals from other triggers
  • Improve decay time resolution with PV event by
    event
  • With NEW data
  • Increased Luminosity (0.8fb-1 on tape!)
  • Use new trigger strategies
  • 2 SVT Tracks tagging muon at trigger level
    (already in place since summer 2004)

x4 statistics
20 better ct res.
  • Hadronic analysis will begin to lead the
    sensitivity
  • Start to eat interesting Dms range (expect
    comb. sens. 15ps-1)

15
NEW additional semileptonic B decays
  • From the same data (360 pb-1) used
  • in mixing analysis
  • Use SVT trigger (2 displaced and 2 GeV tracks)
  • Select e and m offline
  • Allow lower LEPTON PT (4?2GeV)
  • Increase the overall acceptance
  • of more than X 3

At low Lepton PT, expect more backgrounds from
B?DDX decays
16
? more semileptonic Bs for Dms analysis
2 displaced track trigger
4GeV-lepton 1 displaced track trigger
  • Additional new sample overlap with the one
    already used 20
  • Effective X 3 more semileptonic Bs yield to be
    used for MIXING
  • Expect significant sensitivity increase in
    semileptonic Dms search

17
b-hadron lifetimes and DGs/Gs
18
Lifetimes in semileptonic B decays
http//www-cdf.fnal.gov/physics/new/bottom/050224.
blessed-bsemi-life/
  • Largest statistics B sample
  • More complicated background

?(B) 1.6530.0290.032 ps,
?(B0) 1.4730.0360.054 ps ?(B)/?(B0)
1.1230.0400.040
B ? 0.017 ps
B0d ? 0.025 ps
B0s ? 0.03 ps
?b ? 0.037 ps
  • Full statistics sample still under study.
  • Statistical uncertainty expected

_at_ 400 pb-1
19
Lifetimes in fully reconstructed modes
  • Test for our ability to understand SVT trigger
    biases
  • Very clean samples
  • Prerequisite for mixing fits

CDF 05 preliminary result
?(B) 1.6610.0270.013 ps ?(B0)
1.5110.0230.013 ps ?(Bs) 1.5980.0970.017 ps
KK
20
Bs?J/y f and DGs / Gs
  • BS ? J/y f ? mm- KK-
  • B?VV decays Heavy and Light state decay with
    distinct angular distributions and different
    lifetimes.
  • Result (260 pb-1)
  • 1/4 heavy - 3/4 light state
  • Lifetime - theavy 2 x tlight
  • Lifetime difference measures
  • same CKM element as
  • Dm (oscillation frequency)
  • Exciting!! Need more data
  • 5 sensitivity by 2009
  • Dms 10 ps-1 ? DGS / GS 7
  • Test still possible CP violation effect in Bs
    mixing

21
b-Barions
22
Lb modes
  • Lifetimes are an important experimental
    reference
  • Overlap with B factories ? understanding of
    detector/trigger/analysis biases
  • Further test on species not produced at B
    factories

Lb? Lc m X
Theo.
Exp.
C. Tarantino, hep-ph/0310241 Oct 2003
Lb Branching ratios
Lb? Lc p
NEW
http//www-cdf.fnal.gov/physics/new/bottom/050407.
blessed-lbbr/
23
?b Updated knowledge
  • Colors
  • PDG2004
  • CDF contribution beyond current PDG2004

Mass m 5619.9 ? 1.7 MeV/c2
Lb mass
(4.1 ? 2.0) x 10-3
Lc l u
(5.5 ? 1.8)

pK pp
lt 2.2 x 10-5
Lc p- p- p
seen
Lc(2593) l u
seen Lc(2625) l u

seen
Sc p-l u
seen
Sc0 pl u
seen
24
CP violation and charmless B decays
25
Charmless B?hh
  • Difficult competition with B factories for
    t-dependent tagged measurements
  • Interesting B physics measurement of Bs BR and
    ACP(B0?Kp)
  • Signals overlap within mass resolution
  • Kinematic and dE/dX to disentangle components in
    a combined fit

Future measure Bs lifetime in the CP even mode
KK ? extract DGs/Gs
? see talk by Simone Donati
26
Charmless B?VV decays
? see talk by Simone Donati
  • Measured BR( Bs?ff) with 8 events (180 pb-1)
  • Update with 360 pb-1
  • Will go soon for Polarization Amplitude analysis
  • Expected significance similar to B-factories

Future measure DGs/Gs in Bs? ff penguin mode
Bd?fK
Bs?ff
Bs?J/yf
125 events
44 events
225 events
TTT data overlap with 2m trigger 20
27
Search for Bs,d? mm
? see talk by Sinead Farrington
SM BR(Bs???) lt 3.810-9 Sensitive to new physics
Ex.
NEW Results (360 pb-1) BR(Bs ? mm) lt 1.610-7 _at_
90 CL lt 2.110-7 _at_ 95
CL BR(Bd ? mm) lt 3.910-8 _at_ 90 CL
lt 5.110-8 _at_ 95 CL These are currently
world best limits
28
and also at BEAUTY 05
  • Other VERY INTERESTING results from TEVATRON
    Heavy Flavour physics on
  • Bc meson at CDF and D0
  • X(3872) at CDF and D0

? see talk by William Wester
? see talk by Ulrich Kerzel
29
Conclusions
  • CDF performed the first Bs mixing analysis in run
    II
  • We foresee a substantial update with new samples,
    new data collected and improved tagging power for
    winter 2006
  • Working to have world class measurements on
    b-hadron lifetimes and lifetime difference DGs/Gs
  • Perform complementary studies in the field of
    charmless B decays Bd,s?hh, Bd,s?VV, help
    digging the penguin sector
  • Huge CDF legacy of knowledge in Beauty to next
    generation B physics experiments.

30
Backup slides
31
SVT the hadronic B trigger
  • Online Impact parameter
  • Available at Level 2 trigger (20µs latency)
  • ?convolution of transverse size of the beam spot
    with the impact parameter resolution of the SVT

s 47 mm 35 mm 30 mm
SVT resolution
Beam spot size
Impact Parameter distribution
Offline s 45 mm
32
Dms systematic Uncertainties
Hadronic
Semileptonic
  • Dilution scale factors and templates
  • systematic limited from control sample
  • statistics
  • Physics background at low Dms
  • Prompt background at high Dms

Systematic errors are negligible with respect
to statistical in both cases
33
Heavy Flavour Production
bb
from Hb??X in 37 pb-1 of data!
PRD 71, 032001 (2005)
with first 6.5 pb-1 !
cc
Pt gt GeV/c ?(ylt1) ?b
D0 5.5 13.3?0.2?0.5
D 6.0 5.2?0.1?0.8
D 6.0 4.3?0.1?0.7
Ds 8.0 0.75?0.05?0.22
PRL 91, 241804 (2003)
34
Excited Heavy Flavor states
  • B(L1) ? B?
  • B ?J/?K and D? modes
  • Important to understand impact for Same Side Kaon
    tagging ? mixing

35
Welcome back to Bc
http//www-cdf.fnal.gov/physics/new/bottom/050330.
blessed-bc-jpsimu/
  • Mode that gave the first evidence of the Bc (CDF
    Run I)
  • Large yield, no clean resonance though!

106 events
46.0?7.3 events
  • First signal of fully reconstructed Bc
  • Direct mass measurement!

Hep-ex/0505076
36
Lifetimes J/? modes
http//www-cdf.fnal.gov/physics/new/bottom/040428.
blessed-lft2/
  • This was the starting point
  • Clean unbiased sample
  • Precision measurement
  • Reference for biased (e.g. displaced track)
    triggers
  • Test for the understanding of
  • Detector
  • Analysis technique
  • Sample composition

37
Lifetime in the hadronic Bs modes
  • Decay time
  • actually measure transverse quantities
  • Lxy , PT(B)
  • Un-binned likelihood fit
  • Used and

Combinatorial background ct template from high
mass sideband
38
Hadronic B-lifetimes results
CDF
(stat) (syst)
Systematic summary
t(B) 1.66 0.03 0.01 ps t(B0) 1.51
0.02 0.01 ps t(Bs) 1.60 0.10 0.02 ps
t(B)/t(B0) 1.10 0.02 0.01 t(Bs)/t(B0)
1.06 0.07 0.01
World Average lifetimes (exp.)
Theory prediction (see Cecilia Tarantino CKM05)
t(B) 1.653 0.014 ps t(B0) 1.534 0.013
ps t(Bs) 1.469 0.059 ps
t(B)/t(B0) 1.06 0.02 t(Bs)/t(B0) 1.00
0.01
39
Lifetime in the semileptonic Bs modes
ct 455.9 ? 11.9 mm
ct 422.6 ? 25.7 mm
ct 413.8 ? 20.1 mm
Combined l-Ds lifetime result 445.0 ? 9.5 mm
(W.A. 438 ? 17 mm)
statistical err .only, ?NOT for
Averages? (DØ 05 426 ? 13 ? 17 mm)
Real Ds backgrounds prompt and physics
40
HQET baryon lifetimes and B moments
B lifetimes ? Vcb Dominant uncertainty comes from
HQET extraction! CDF can probe HQET and constrain
it!
?b lifetime
http//www-cdf.fnal.gov/physics/new/bottom/030710.
blessed-lambdab-lifetime/
C. Tarantino, hep-ph/0310241 Oct 2003
LO
NLO
LO
NLO
LO
NLO
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