Sp(4,Z) actions on 3d U(1)^2 symmetric theories: Order-five duality and bilayer quantum Hall hierarchies
arXiv:2607.20622
Abstract
The electromagnetic duality of 4d Maxwell theory induces theory-generating operations on 3d theories with global symmetry. For theories with symmetry, this structure generalizes to . Focusing on the case, we formulate the bulk action and derive the corresponding boundary operations. We identify an intrinsically two-component element of order five, which generalizes the order-three element of the single- theory. Although its fifth power acts trivially in the bulk, the corresponding boundary operation closes only up to a decoupled invertible phase, suggesting a mixed duality-gravitational anomaly. We realize the resulting theory-generating web for Abelian Chern-Simons theories within the -matrix formalism and apply it to bilayer fractional quantum Hall systems. Recasting the Haldane--Halperin hierarchy construction as a sequence of operations, we generalize it to systems with charge and pseudospin symmetries. The resulting bilayer hierarchies contain branches terminating in an interlayer-correlated bosonic daughter sector, yielding candidate Abelian states at the even-denominator equal-layer fillings and . Integral changes of anyon basis establish the equivalence of these states to their corresponding Abelian composite-fermion descriptions. We further discuss the spin-charge constraints that arise when the electromagnetic background field is treated as a spin- connection.
34 pages, 2 figures