Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA...

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Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005
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Transcript of Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA...

Page 1: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Physics of the Charm Quark

Gene GolowichPhysics Department

Univ. of MassachusettsAmherst MA

ColloquiumWayne State Univ. September 22, 2005

Page 2: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Rough Outline

• Some Background Comments

• Some Standard Model

• Some New Physics

Page 3: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

‘Coals to Newcastle’

• ExperimentCLEO: Bonvicini, Cinabro, Dubrovin

CDF: Harr, Karchin

• TheoryPetrov, Gabbiani, AlFiky

Page 4: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Discovery of Charm

Age: c-quark will turn 31 on 11/11

Birth: East Coast (BNL) West Coast (SLAC)

SLAC Method:

Narrow resonance at E = 3.1 GeV!

Thereafter called the `J/’

Page 5: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

The Standard Model

Page 6: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

NuTeV Anomaly?

Page 7: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Three Years of Tests

Page 8: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Spectrum of Quark Masses

Predict this Spectrum: Easy/Hard?

Page 9: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Quark Masses and Theory

• Predict quark masses? No viable models

exist

• What about String Theory? String ground state huge! `Landscape’ description. Many-universes scenario. Elementary constants random! Lucky us! We EXIST!!

• What about mc = 1.3 GeV? Difficult theoretically. Not heavy enough! Not light enough! Complications of QCD

Page 10: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

QED vs QCD

QED

QCD

ρ E

JtE/B

baabcccAEgερE

)AB(Egε

Jt/EB

babaabc

aaa

V

Page 11: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Progress in Lattice QCD

Page 12: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Standard Model Physics

• D Meson Ground State

• The spectator c-quark: Bc Mesons

• D Decays: Leptonic, Semileptonic,

Nonleptonic

• Spectroscopy: Exotic states?

Page 13: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

D Meson Ground State

Predict the States: Easy/Hard?

qC

Page 14: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

D Meson Ground State

q = u D0

q = d D+

q = s Ds+

Easy! 3* of SU(3)

qC

Page 15: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Flavored Mesons

Each quark has its own ‘flavor’

Quark composites are ‘flavored’

s-quark: K’s =

c-quark: D’s =

b-quark: B’s =

The t-quark decays too quickly!

qs

qc

qb

Page 16: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Bc Mesons!

Page 17: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Leptonic Decay of D+

Decay Amplitude:

Decay Constant fD:

Non-perturbative efect.Requires Lattice QCD!

Page 18: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

fD: Theory vs Experiment

Page 19: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Semileptonic Decays

Decay Amplitude:

D0 K e+ e

Page 20: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Form Factor Slopes

Page 21: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Nonleptonic Decays

Decay Amplitude:

A = a ei

Page 22: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Dalitz Studies

Page 23: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Phase Information

Page 24: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

More Dalitz

Page 25: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Comparative Lifetimes

B: B- = b B0 = d

-/0 = 0.92

u b

Page 26: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Comparative Lifetimes

B: B- = b B0 = d

-/0 = 0.92

D: D0 = c D+ = c

-/0 = 2.55

du

u b

Page 27: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Comparative Lifetimes

B: B- = b B0 = d

-/0 = 0.92

D: D0 = D+ =

-/0 = 2.55

K: K- = K0 =

-/0 = 139.

u b

uc dc

sdus

Page 28: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Charm Production

e+e- collisions produce charm.

There are predictions for this.

Not all data are understood!

Page 29: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Heavy Meson Spectroscopy

Page 30: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

X(3872) Sighting

Page 31: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Is X(3872) a Molecule?

AlFiky, Gabbiani, Petrov (2005) [plus others]

Interpret X(3872) as a bound state of hadrons ( )

Analogous to the Deuteron!

Similar molecular state predicted long ago.

Beware: other interpretations possible.

00 KK

00 DD

Page 32: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Y(3940)

2/d.o.f. = 15.6/8

stat. sig. = 8.1

above D*D threshold

not found in DD or

D*D final states

Page 33: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Is Y(3940) a ‘Hybrid’?

Hybrid Meson : Color-octet quark-antiquark couples to

color-octet gluon to yield color-singlet hadron

G

]q[C

Page 34: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

D0 K- +

Page 35: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Where are CP Violations?

Page 36: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

New Physics and Charm

• Methodology?

• Rare Decays of D Mesons

• Flavor Oscillations

• CP Violations (not discussed here)

Page 37: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Methodology

How to find ‘New Physics’?

Study systems where SM signals are small. Ideal

forcharm:

A] Rare Decays

B] Flavor Oscillations

Page 38: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

D0 + - in the SM

Page 39: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Data and D0 + -

Page 40: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

D0 0 e+ e-

Page 41: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Flavor Oscillations

Mixing

Mixing also in K0,Bd and Bs.

Each of these is different!

00 DD

Page 42: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Two Coupled Penduli

Page 43: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

The ‘Spring’

Page 44: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

New Physics and Mixing

Page 45: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

The Normal Modes

Normal Modes

Effect of CP:

2/]D[DD 00

00 D|D|CP

D|D|CP

Page 46: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Mixing of Bd Mesons

Page 47: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Mixing of Bs Mesons

Page 48: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Mixing of K Mesons

Page 49: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Mixing of D0 Mesons

Page 50: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Recent Work on D0 Mixing

Theory:Effect of QCD incorporated

intoanalysis of D0 mixing by

Golowichand Petrov. Work continues.

Experiment;Especially interesting are

attemptsto measure D at the 1%

level.

Page 51: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Summary I

• The c-quark is a remarkably spry 31 year old!

• A very active social life: Spectroscopy Flavor oscillations Rare decays CP violation searches

• After studies at CDF, CLEO, Belle and BaBar will come the long awaited LHC.

Page 52: Physics of the Charm Quark Gene Golowich Physics Department Univ. of Massachusetts Amherst MA Colloquium Wayne State Univ. September 22, 2005.

Summary II

• Flavor mixing of D mesons will be a hot topic for both experimenters and theorists.

• Exotic charm states (hybrid and/or molecular) will continue to attract much attention.