the structure and dynamics nora brambilla (u. milano) of hadron systems with two heavy quarks

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The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

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Page 1: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

The Structure and Dynamics

Nora Brambilla (U. Milano)

of Hadron Systems

with two Heavy Quarks

Page 2: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

QCD and the Hadrons

Parameters:

,

Page 3: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

QCD and the Hadrons Structure

Page 4: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

QCD and the Hadrons Dynamics

Bali et al. 95

Page 5: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Systems made by two quarks are golden systems for strong interactions

Precision determinations of QCD parameters (of interest for SM and BSM physics)

information on QCD vacuum and low energy properties (of interest for theories beyond QCD)

information on the transition region from high energy to low energy (of interest for the behaviour of perturbative series)

They can provide us with:

Page 6: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

how is this?

Page 7: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Low energy (nonperturbative) factorizedeffects depend on the size of the physical

system

Page 8: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Plan of the talk

•Introduction•small systems,condensates,resummations and precise determinations •gluelumps, hybrids and condensates•inclusive decays, octets and factorization•Big systems,nonperturbative potentials and qcd vacuum models•“QQ” systems in baryons•challenges

Page 9: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

With the November 1974 revolution also the traditional quarkonium spectroscopy started:•huge impact: c quark discovery; asymptotic freedom; confinement.

•few conventional charmonium states;•limited production mechanisms;•limited statistics;•potential model.

Quarkonium at the beginning

Page 10: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Progress based on

New data

New Theory

Page 11: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

quark pair creation relevant only for light quarks and at large

distances one channel is dominant

(perturbative scale!)

Page 12: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

QQ: a multiscale System

and

Page 13: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Multiscale Non-relativistic bound states

No correlation between the number of gluons and the importance of the amplitude due to multiple

scales; gauge dependence.In the Bethe-Salpeter approach great difficulties

Page 14: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Nonrelativistic EFTs

•Systematic expansion;•Model independent; Gauge invariant;•Factorization between high and low energy;•Only the relevant degrees of freedom remain dynamical (the rest integrated out in a controlled way);•All the relevant Fock components appear and with a power counting in v (e.g. octets)•Symmetries of the original theory constrain the c • Additional Symmetries of the system become manifest;•At the scale m the matching coeff. can be calculated in perturbation theory•Large logs can be resummed via RG.

Page 15: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Disentangling scales with EFTs

Hard

Soft(relative

momentum)

Ultrasoft (binding energy)

In QCD another scale is relevant

Page 16: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

EFTs for Quarkonium

Page 17: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Poincare invariance of the EFT

Page 18: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Constraints from Poincare Invariance

Brambilla, Gromes, Vairo 03

In the same wayone gets relationsamong the matching potentials V

Page 19: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Small systems: QQ energies at

• Summing large beta0 (removing the renormalon of the series) Beneke et al., Hoang et al.,Brambilla et al, Pineda

• Summing the logs: RG correlated scales Luke and Savage; Manohar and Stewart; Pineda Soto

The bottleneck are nonperturbative contributions: but they are suppressed --->

precision calculations are possible

perturbative singlet potential

singlet singletoctet

low energy gluon

Dealing with the QCD perturbative series:

Page 20: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

--Precise determinations of m_b and m_c

--High order calculations of the static singlet QQbar potential (four loops NLL):

full agreement with lattice

--

Page 21: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks
Page 22: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

The Gluelump Spectrum

Page 23: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

QQ Static spectrum with gluons

Juge Kuti Mornigstar 98-06

hybrid

Lattice

Page 24: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Gluelumps and hybrids in pNRQCD

lattice

Juge Kuti Morningstar 00 03

Brambilla Pineda Soto Vairo 00

for small r pNRQCD applies

Page 25: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Gluelumps and hybrids in pNRQCD:more symmetry!

lattice

Juge Kuti Morningstar 00 03

Brambilla Pineda Soto Vairo 00

Page 26: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Gluelumps Masses

Magnetic gluelump mass

Electric gluelump mass

is the fundamental object in many models of QCD vacuumStochastic Vacuum Model, Dosch et alDual QCD Baker et alBrambilla et al 97, 98,00

Page 27: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Gluelumps Masses

Magnetic gluelump mass

Electric gluelump mass

it gives also the leading nonperturbative correction to spectra and decay

It needs better lattice calculation!

Page 28: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Gluelumps Masses

Page 29: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Inclusive decays

Page 30: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Inclusive decays: perturbation and singlet model

Page 31: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Inclusive decays: NRQCD

Fock state content of QQbar in NRQCD:

Page 32: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Inclusive

decays

pNRQCDfactorization

nonperturbativeeffects in

condensates

Page 33: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks
Page 34: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks
Page 35: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks
Page 36: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

large systems

Page 37: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Brambilla Pineda Soto Vairo 00

•A potential (quark model like) description emerges from the EFT

•V soft may be calculated on the lattice or in QCD vacuum modelsCreutz et al 82, Campostrini 85, Michael 85, Born et al 94, Bali et al 97k, Koma, Koma Wittig 2006, Brambilla et al 90 93 95 97, Dosch, Simonov:

Baker et al

Big systems: strongly coupled pNRQCD

The QCD potential

contains a hard and a soft part (in terms of Wilson loops)

Page 38: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Investigating the QCD vacuum

A QCD vacuum model is an assumption on the low energy behaviour of the Wilson loop

(gauge invariant, all the rest follows)

All QQ dynamics is given in terms of Wilson loops and electric and magnetic insertion in

the Wilson loop

Page 39: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Studies of Confinement on Wilson loops/V_0

Bali et al

Boryakov et al. 04

Page 40: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

QCD Spin dependent potentials

-factorization; power counting; QM divergences absorbed by NRQCD matching coefficients

Page 41: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Spin dependent potentials

Such data can distinguish different models for the dynamics of low energy QCD

Page 42: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Exact relations on the V’s from Poincare

e. g.

It is a check of the lattice calculation

Koma and Koma 2006

Gromes relation

many other such relations in pNRQCD, Brambilla et al. 2003

Page 43: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

QCD Spin independent potentials

Page 44: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

QQq and QQQ baryons

Page 45: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Doubly Charmed Baryons

Selex 02,04,06 but no confirmation by Focus and babar

Page 46: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

QQq systems

Notice that

diquark approximation not valid

Page 47: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Hyperfine separation

Selex data,Fig. from T. Cohen et al.

pNRQCD result

Lattice

See the internal QQ excitations ?

state 3780 l>0?problems with e.m.

transitions

Page 48: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

QQQ states

The lowest QQQ states

are few hundreds

Mevs lower than

Bjiorken’sY. Jia 06

Page 49: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Goodtestingbed for

QCD vacuummodels

Page 50: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks
Page 51: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

OPEN CHALLENGES

Page 52: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks
Page 53: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Quarkonium Production at Tevatron and LHC

Polarization at tevatronCFD 06

The polarization problem

A solution may come froman EFT with different power counting

Page 54: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

•Most of the new states are close to threshold• It is most important to construct and EFT close to

threshold (talk Weise)

Page 55: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Quarkonium at finite T & Heavy Ion collisions

Spectral density above and below Tc

QQbar singlet Free energy at

finite T

EFT approach

for the scale T, gT, g^2 T

Page 56: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

•Direct formulation on the lattice:pNRQCD on the lattice

• Quarkonium Van Der Waals Interaction and Quarkonium on nuclei

Page 57: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

Search for Physics BSM

Dark matter: run at Belle at Y(3S)

Light Higgs in eta_b search: breakdown of lepton universality in Y decays

LFV processes and CPV processes in J/psi decays at BESIII

Page 58: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks

OutlookEffective field theories provide a systematic tool to investigate a wide range of heavy quark observables inside QCD

They need to be complemented by lattice calculations

These theory tools can match some of the intense experimental progress of the last few years and of the near future, but more has to be done:

Heavy quark bound states are a unique lab for the study of the strong interactions from the high energy scales where precision studies can be made to the low energy region: use all the present and future data to test/develop our theory tools on the way to the hadron structure and dynamics

Some Perturbative calculations at higher orderLattice calculations of condensates/wilson loopsModels for the QCD vacuumNew EFTs close to threshold

Page 59: The Structure and Dynamics Nora Brambilla (U. Milano) of Hadron Systems with two Heavy Quarks