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Spin-One Secondary Pairing in Two-Flavor Color Superconductivity: Spinful Relativistic Superfluidity and Anomaly Matching

Published 21 Sep 2026 in nucl-th, cond-mat.supr-con, hep-ph, and hep-th | (2609.24472v1)

Abstract: We study secondary pairing in the two-flavor color-superconducting (2SC) phase, where the residual ungapped quarks form a same-chirality J<sup>P=1<sup>+J<sup>P=1<sup>+ condensate driven by an attractive instanton-induced interaction. We determine its symmetry realization, quasiparticle structure, anomaly matching, and low-energy effective theory. The pairing gap is necessarily nodal; in particular, the complex axial state has two point nodes and realizes a spinful relativistic superfluid. This state preserves the full chiral symmetry SU(2)<em>L×SU(2)</em>R{\rm SU}(2)<em>{\rm L}\times{\rm SU}(2)</em>{\rm R} while breaking the modified baryon-number symmetry U(1)<em>B~{\rm U}(1)<em>{\tilde{\rm B}} and spatial rotations, with rotations about the nodal axis locked to the condensate phase. This locking gives rise to a Berry term, the Mermin-Ho relation, and a type-B orientational Nambu-Goldstone mode in addition to the superfluid phonon. We also show how anomaly matching is reorganized by secondary pairing: the perturbative mixed SU(2)</em>L,R<sup>2</sup>U(1)<em>B~{\rm SU}(2)</em>{\rm L,R}<sup>2{\rm</sup> U}(1)<em>{\tilde{\rm B}} anomaly is realized by a Wess-Zumino coupling of the superfluid phonon, whereas the SU(2)</em>L{\rm SU}(2)</em>{\rm L} and SU(2)R{\rm SU}(2)_{\rm R} Witten anomalies are carried by the point-node Bogoliubov-de Gennes flavor doublets. The resulting theory provides a concrete dense-QCD realization of a spinful relativistic superfluid with nodal fermions required by anomaly matching.

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