A chiral U(1) gauge symmetry generates an accidental Peccei-Quinn symmetry broken by mirror QCD, solving the strong CP problem without a light axion while supplying WIMP dark matter, stochastic gravitational waves, and LHC-testable colored pNGBs.
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Constrained instantons satisfy all boundary conditions consistently in massive φ⁴ and broken Yang-Mills theories when asymptotic behaviors are tracked properly, resolving a prior claimed inconsistency.
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Accidental Peccei-Quinn Symmetry from Chiral Gauge Symmetry and Mirror QCD
A chiral U(1) gauge symmetry generates an accidental Peccei-Quinn symmetry broken by mirror QCD, solving the strong CP problem without a light axion while supplying WIMP dark matter, stochastic gravitational waves, and LHC-testable colored pNGBs.
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A Closer Look at Constrained Instantons
Constrained instantons satisfy all boundary conditions consistently in massive φ⁴ and broken Yang-Mills theories when asymptotic behaviors are tracked properly, resolving a prior claimed inconsistency.