Entanglement spectrum ordering and flavor polarization in the two-flavor Schwinger model at vacuum angle θ= π
Boliang Yu, Ruixin Zhou, Meisen Gao
Abstract
Entanglement spectra in gauge theories can encode both symmetry breaking and the organization of gauge sectors. In the two-flavor Schwinger model at vacuum angle θ=π, we find that the joint Schmidt distribution pQA,FA, labeled by the subsystem gauge charge QA and flavor imbalance FA, reveals a cut-dependent gauge-sector hierarchy and a mass-induced flavor asymmetry: changing the staggered cut reorganizes the gauge-charge distribution pQA, while mass imbalance breaks the FA-FA symmetry of the conditional flavor distribution pFA|QA. Defining the combined weight WF(q)=pq,+1+pq,-1 and conditional polarization PF(q)=(pq,+1-pq,-1)/WF(q), we find that changing the cut reverses the weight hierarchy, WF(-1)>WF(+1) at unit-cell boundaries but WF(+1)>WF(-1) at intra-cell cuts, while mass imbalance drives PF(q) away from zero with a q-dependent cut response. Symmetry resolution therefore separates gauge-sector ordering, sector weight, and flavor polarization that are mixed in the globally ordered entanglement spectrum.
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