Asymptotic Freedom versus Open/Closed Duality in Large-N QCD
arXiv:1606.04546 · doi:10.1103/PhysRevD.95.054010
Abstract
The solution of the large-N 't Hooft limit of QCD is universally believed to be a String Theory of Closed Strings in the Glueball Sector and of Open Strings in the Meson Sector. Yet, we prove a no-go theorem, that the large-N limit of QCD with massless quarks, or more generally, that the large-N limit of a vast class of confining, i.e. with a Mass Gap in the Glueball Sector, asymptotically-free Gauge Theories coupled to matter fields with no mass scale in perturbation theory cannot be a canonically-defined String Theory of Closed and Open Strings, i.e. admitting Open/Closed Duality. The no-go theorem occurs because Open/Closed Duality, implying that the ultraviolet divergences of annulus diagrams in the Open Sector arise from infrared divergences of tadpoles of massless particles in the Closed Sector, turns out to be incompatible with the existence of the Mass Gap in the Glueball Sector of confining asymptotically-free theories with no mass scale in perturbation theory in which, as for example in QCD, the first coefficient of the beta function for 't Hooft gauge coupling gets corrections due to the matter fields. Moreover, we suggest a way-out to the no-go theorem on the basis of a new non-canonical construction of the String S-matrix for asymptotically-free Gauge Theories such as large-N QCD, involving Topological Strings on Non-Commutative Twistor Space.
8 pages; the main argument is extended to a punctured sphere with a boundary loop; further references and acknowledgements
References in corpus (2)
Cited by in corpus (8)
- A model for pion-pion scattering in large-N QCD
- Renormalization in large- QCD is incompatible with open/closed string duality
- On the geometry of operator mixing in massless QCD-like theories
- Operator mixing in massless QCD-like theories and Poincare'-Dulac theorem
- Recursive construction of the operator product expansion in curved space
- On the structure of the large- expansion in SU() Yang-Mills theory
- Operator mixing, UV asymptotics of nonplanar/planar -point correlators, and nonperturbative large- expansion of QCD-like theories
- On the Kerr-AdS/CFT correspondence