On the mass of the world-sheet `axion' in SU(N) gauge theories in 3+1 dimensions
arXiv:1702.03717 · doi:10.1016/j.physletb.2017.05.082
Abstract
There is numerical evidence that the world sheet action of the confining flux tube in D=3+1 SU(N) gauge theories contains a massive excitation with 0- quantum numbers whose mass shows some decrease as one goes from SU(3) to SU(5). It has furthermore been shown that this particle is naturally described as arising from a topological interaction term in the world-sheet action, so that one can describe it as being `axion'-like. Recently it has been pointed out that if the mass of this `axion' vanishes as N -> oo then it becomes possible for the world sheet theory to be integrable in the planar limit. In this paper we perform lattice calculations of this `axion' mass from SU(2) to SU(12), which allows us to make a controlled extrapolation to N=oo and so test this interesting possibility. We find that the `axion' does not in fact become massless as N -> oo. So if the theory is to possess planar integrability then it must be some other world sheet excitation that becomes massless in the planar limit.
14 pages, 2 tables, 3 figures; some typos corrected plus minor clarifications
References in corpus (4)
Cited by in corpus (18)
- Asymptotic Fragility, Near Holography and
- Flux Tube S-matrix Bootstrap
- Undressing Confining Flux Tubes with
- A Simple Worldsheet Black Hole
- Spectrum of the open QCD flux tube and its effective string description I: 3d static potential in SU(N=2,3)
- Boundary states and Non-Abelian Casimir effect in lattice Yang-Mills theory
- The Large limit of QCD on the lattice
- On the spectrum and string tension of U(1) lattice gauge theory in 2+1 dimensions
- Confining Strings, Infinite Statistics and Integrability
- Classical Integrability of the Zigzag Model
- From center-vortex ensembles to the confining flux tube
- Glueball Spins in Yang-Mills
- The QCD -function On The String Worldsheet
- Eight very excited spectra and one possible axion in SU(3) lattice gauge theory
- Effective long distance potential in holographic RG flows
- From QCD Strings to WZW
- Pfaffian particles and strings in SO(2N) gauge theories
- Translating current ALP photon coupling strength bounds to the Randall-Sundrum model