Phases of N = ∞ QCD - like gauge theories on S 3 × S 1 and nonperturbative orbifold - orientifold equivalences
نویسنده
چکیده
We study the phase diagrams of N = ∞ vector-like, asymptotically free gauge theories as a function of volume, on S3 × S1. The theories of interest are the ones with fermions in two index representations [adjoint, (anti)symmetric, and bifundamental abbreviated as QCD(adj), QCD(AS/S) and QCD(BF)], and are interrelated via orbifold or orientifold projections. The phase diagrams reveal interesting phenomena such as disentangled realizations of chiral and center symmetry, confinement without chiral symmetry breaking, zero temperature chiral transitions, and in some cases, exotic phases which spontaneously break the discrete symmetries such as C, P, T as well as CPT. In a regime where the theories are perturbative, the deconfinement temperature in SYM, and QCD(AS/S/BF) coincide. The thermal phase diagrams of thermal orbifold QCD(BF), orientifold QCD(AS/S), and N = 1 SYM coincide, provided charge conjugation symmetry for QCD(AS/S) and Z2 interchange symmetry of the QCD(BF) are not broken in the phase continously connected to R4 limit. When the S1 circle is endowed with periodic boundary conditions, the (nonthermal) phase diagrams of orbifold and orientifold QCD are still the same, however, both theories possess chirally symmetric phases which are absent in N =1 SYM. The match and mismatch of the phase diagrams depending on the spin structure of fermions along the S1 circle is naturally explained in terms of the necessary and sufficient symmetry realization conditions which determine the validity of the nonperturbative orbifold orientifold equivalence.
منابع مشابه
QCD-like gauge theories on S × S and nonperturbative orbifold-orientifold equivalences
We study the phase diagrams of N = ∞ vector-like, asymptotically free gauge theories as a function of volume, on S3 × S1. The theories of interest are the ones with fermions in two index representations [adjoint, (anti)symmetric, and bifundamental abbreviated as QCD(adj), QCD(AS/S) and QCD(BF)], and are interrelated via orbifold or orientifold projections. The phase diagrams reveal interesting ...
متن کاملVolume independence in large Nc QCD-like gauge theories
Volume independence in large Nc gauge theories may be viewed as a generalized orbifold equivalence. The reduction to zero volume (or Eguchi-Kawai reduction) is a special case of this equivalence. So is temperature independence in confining phases. A natural generalization concerns volume independence in “theory space” of quiver gauge theories. In pure Yang-Mills theory, the failure of volume in...
متن کاملMillennial Messages for Qcd from the Superworld and from the String
Supersymmetric gauge theories have had a significant impact on our understanding of QCD and of field theory in general. The phases of N = 1 supersymmetric QCD (SQCD) are discussed, and the possibility of similar phases in non-supersymmetric QCD is emphasized. It is described how duality in SQCD links many previously known duality transformations that were thought to be distinct, including Olive...
متن کاملNon-Perturbative Planar Equivalence and the Absence of Closed String Tachyons
We consider ’orbifold’ and ’orientifold’ field theories from the dual closed string theory side. We argue that a necessary condition for planar equivalence to hold is the absence of a closed string tachyonic mode in the dual non-supersymmetric string. We analyze several gauge theories on R × S. In the specific case of U(N) theories with symmetric/anti-symmetric fermions (’orientifold field theo...
متن کاملOn Gauge Dynamics and SUSY Breaking in Orientiworld
In the Orientiworld framework the Standard Model fields are localized on D3-branes sitting on top of an orientifold 3-plane. The transverse 6dimensional space is a non-compact orbifold (or a more general conifold). The 4-dimensional gravity on D3-branes is reproduced due to the 4-dimensional Einstein-Hilbert term induced at the quantum level. The orientifold 3-plane plays a crucial role, in par...
متن کامل