Abstract

In this introductory review we discuss dynamical tests of the AdS5 × S5 string/{mathcal N}=4 Super Yang-Mills duality. After a brief introduction to AdS/CFT, we argue that semiclassical string energies yield information on the quantum spectrum of the string in the limit of large angular momenta on the S5. The energies of the folded and circular spinning string solutions rotating on a S3 within the S5 are derived, which yield all-loop predictions for the dual gauge theory scaling dimensions. These follow from the eigenvalues of the dilatation operator of {mathcal N}=4 Super Yang-Mills in a minimal SU(2) subsector, and we display its reformulation in terms of a Heisenberg s = 1/2 spin chain along with the coordinate Bethe ansatz for its explicit diagonalization. In order to make contact to the spinning string energies, we then study the thermodynamic limit of the one-loop gauge theory Bethe equations and demonstrate the matching with the folded and closed string result at this loop order. Finally, the known gauge theory results at higher-loop orders are reviewed and the associated long-range spin chain Bethe ansatz is introduced, leading to an asymptotic all-loop conjecture for the gauge theory Bethe equations. This uncovers discrepancies at the three-loop order between gauge theory scaling dimensions and string theory energies and the implications of this are discussed. Along the way, we comment on further developments and generalizations of the subject and point to the relevant literature.

Highlights

  • String theory was initially discovered in an attempt to describe the physics of the strong interactions prior to the advent of gauge field theories and QCD

  • After a brief introduction to Anti-de-Sitter/Conformal Field Theory (AdS/CFT), we argue that semiclassical string energies yield information on the quantum spectrum of the string in the limit of large angular momenta on the S5

  • The energies of the folded and circular spinning string solutions rotating on a S3 within the S5 are derived, which yield all-loop predictions for the dual gauge theory scaling dimensions

Read more

Summary

Introduction

One is facing a strong/weak coupling duality, in which strongly coupled gauge fields are described by classical supergravity, and weakly coupled gauge fields correspond to strings propagating in a highly curved background geometry This insight is certainly fascinating, but at the same time strongly hinders any dynamical tests (or even a proof) of the AdS/CFT conjecture in regimes that are not protected by the large amount of symmetry in the problem. This review aims at a more elementary introduction to this very active area of research, which in principle holds the promise of finding the exact quantum spectrum of the AdS5 × S5 string or equivalently the all-loop scaling dimensions of planar N = 4 Super Yang–Mills It is intended as a first guide to the field for students and interested “newcomers” and points to the relevant literature for deeper studies. For a detailed account of the near plane-wave superstring, its quantum spectroscopy and integrability structures see Swanson’s thesis [114]

The Setup
The rotating point-particle
Spinning String Solutions
Further Developments
The Dual Gauge Theory Side
The coordinate Bethe ansatz
The thermodynamic limit of the spin chain
Further developments
Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call