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Analysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @ Toronto hep-th/0412141 hep-th/0507073 based on : T. Sakai and S.S.

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Page 1: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

Analysis of QCD via Supergravity

Shigeki Sugimoto (YITP)

Strings 2005 7/11-16, 2005 @ Toronto

hep-th/0412141

hep-th/0507073

based on : T. Sakai and S.S.

Page 2: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

What is nice?

We can use* knowledge of QCD* experimental datato test the conjectured gauge/gravity duality.

A new way to analyze QCD.→ application to phenomenology

QCD is one of our favorite QFT.

Anyway, it is fun !

Page 3: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

Outline

String theory

Sugra

QCD

Hadron physics

Page 4: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

① Construction of QCD

Page 5: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

★ building blocks

Yang-Mills

quarks

QCD = YM + quarks

Add probe D8-branes.

[Kruczenski-Mateos-Myers-Winter 2003]

cf) KMMW model : D4 + probe D6

D4-brane on with

[Witten 1998]Corresponding SUGRA solution is known.

SUSY

fermion

Page 6: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

★ the brane configuration

[cf) S.S.-Takahashi 2004]

4 dim QCD with massless quarks

Page 7: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

② Supergravity description

Page 8: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

★ Probe approximation

We assume

Only D4-brane is replaced with the SUGRA solution.pairs are treated as probes.

heavy

light

probe

cf)

Page 9: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

The metric of the corresponding D4 solution is

D4

D4

flat D4 solution

where

radial direction, bounded as

Page 10: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

③ Exploration

Chiral symmetry breaking

Unification of mesons

Construction of baryons

mass & couplings

vector meson dominance

highlights

Page 11: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

★ Chiral symmetry breaking

and must be connected

in the D4 background.

We replace D4 with the SUGRA sol.

interpreted as the chiral symmetry breaking !

connected

Page 12: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

★ Where are mesons?

closed string glueballs

mesonsopen string

reduced to 5 dim gauge theory

The effective theory is a 9 dim gauge theory

There is an symmetry

(mesons in realistic QCD live in this sector)

※ Today, we only considerthe singlet states, for simplicity.

Note:

Page 13: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

D8-brane action

This 5 dim YM-CS theory is consideredas the effective theory of mesons.

[cf) Son-Stephanov 2003]

D4 charge CS 5-form

Inserting the SUGRA solution,

Page 14: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

mode expansion

In addition, we have one more normalizable mode

some

completesets

★ choose as eigen functions satisfying

★ choose as

To diagonalize kinetic & mass terms of ,

Page 15: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

In summary,

Using these, we obtain

eaten

masslessscalar meson

massive vector meson

eaten eaten

are unified in the 5 dim gauge field !

Page 16: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

★ Comments on

Charge conjugation : and

Parity :

★ Consistent with our interpretation.

★ Prediction: vector and axial-vector mesonsappear alternately.

( … not established)

Page 17: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

★ mass spectrum

The mass of the n-th meson is given by

where is the eigen value of the equation

★ Let us solve this numerically,to see if our model is too bad or not.

We should not be too serious,since the approximation is very crude.

Page 18: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

Results :

(our model)

(experiment)

+7 %

-17 % (our model)

(experiment)

Page 19: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

★ chiral symmetry

Residual gauge symmetry constant

s.t.

We have implicitly assumed

This is interpreted as

If you want to ‘gauge’ the chiral symmetry,

the corresponding gauge fields appear as

Page 20: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

interpreted as the pion field

transforms as

Define

It is also useful to define

transforms as

“ hidden” local symmetry

[Bando-Kugo-Uehara-Yamawaki-Yanagida 1985]

Page 21: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

★ Two useful gauge choices

gauge

gauge

Pion appears in the boundary condition

The mode exp. consistent with this b.c. is

obtained by the gauge tr. with

(→ simple interaction)

(→ manifest chiral symmetry)

(higher modes are gauged away.)

(appropriately chosen)

Page 22: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

★ effective action

Inserting the mode exp. into the D8-brane action

we obtain the effective action for the mesonswritten in terms of (or ), and .

Using the gauge,the effective action of the pion field is obtained as

This is the Skyrme model action.The coefficients are consistent with the experimental data, if we set

Page 23: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

★ Baryon

Baryon D4-brane wrapped on

Baryons in the AdS/CFT context is constructed as wrapped D-branes. [Witten 1998]

In our case,

Skyrme proposed

Baryon Soliton in Skyrme model (Skyrmion)

[Skyrme 1961]

Skyrmion instanton on D8 Wrapped D4 ■∴

In our case, a Skyrmion can be lifted toan instanton in the 5 dim YM theory, andthe instanton on the D8 is equivalent the wrapped D4.

Page 24: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

★ KSRF relationWorking in the gauge , the 3 pt coupling

is calculated as .

(our model)

(experiment)

Note:

[cf) Da Rold-Pomarol 2005]

[Kawarabayashi-Suzuki 1966]

[Riazuddin-Fayyazddin 1966](KSRF)

Page 25: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

★ including photon

ele-mag gauge field is introduced by setting

charge matrixWe obtain

with

Note:[cf) Son-Stephanov 2003]

(our model)

(experiment)

Page 26: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

pion form factor is computed as

★ pion form factor

“vector meson dominance”charge radius

If we fix by fitting the meson mass,we obtain

(our model)

(experiment)

[Gell-Mann -Zachariasen 1961]

[Sakurai 1969]

Page 27: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

★ WZW term

We can calculate the intrinsic parity violatinginteractions from the CS-term.

Working in the gauge, we obtain

reproduces the well-known formula. [Witten 1983]

Page 28: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

★ including vector mesons in WZW term

Working in the gauge, we obtain

with

Moreover, one can show

All the terms including are cancelled.(complete vector meson dominance)

Terms with more than one pion field vanish.

Page 29: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

★ and

The relevant diagrams for these decay are

Exactly the same as the GSW model ![Gell-Mann -Sharp-Wagner 1962]

Furthermore, we find

reproduces the proposal given by Fujiwara et al ![Fujiwara-Kugo-Terao-Uehara-Yamawaki 1985]

Page 30: Analysis of QCD via Supergravitymember.ipmu.jp/yuji.tachikawa/stringsmirrors/2005/sugimoto.pdfAnalysis of QCD via Supergravity Shigeki Sugimoto (YITP) Strings 2005 7/11-16, 2005 @

Summary

String theory

Sugra + probe D8

QCD

Hadron physics