Two dimensional conformal field theories with the extended W3 symmetry algebra have an infinite number of mutually commuting conserved charges, which are referred to as the quantum Boussinesq charges. In this work we construct local operators whose zero modes are precisely these conserved charges. For this purpose we study the higher spin conformal field theory on the torus and compute thermal correlators involving the stress tensor and the spin-3 current in a higher spin module of the W3 algebra. In addition we independently obtain the excited state eigenvalues of the quantum Boussinesq charges within the higher spin module via the ODE/IM correspondence. A judicious combination of these data allows us to derive the local operators, whose integrals are the conserved charges of the integrable hierarchy.

Thermal correlators and currents of the W3 algebra

Ashok S. K.
Membro del Collaboration Group
;
Tateo R.
Membro del Collaboration Group
2025-01-01

Abstract

Two dimensional conformal field theories with the extended W3 symmetry algebra have an infinite number of mutually commuting conserved charges, which are referred to as the quantum Boussinesq charges. In this work we construct local operators whose zero modes are precisely these conserved charges. For this purpose we study the higher spin conformal field theory on the torus and compute thermal correlators involving the stress tensor and the spin-3 current in a higher spin module of the W3 algebra. In addition we independently obtain the excited state eigenvalues of the quantum Boussinesq charges within the higher spin module via the ODE/IM correspondence. A judicious combination of these data allows us to derive the local operators, whose integrals are the conserved charges of the integrable hierarchy.
2025
2025
1
1
23
Conformal and W Symmetry; Integrable Field Theories; Integrable Hierarchies
Ashok S.K.; Parihar S.; Sengupta T.; Sudhakar A.; Tateo R.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/2084702
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