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Pseudogauge freedom and the SO(3) algebra of spin operators

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arxiv 2303.05271 v2 pith:J7OXDXSL submitted 2023-03-09 hep-th hep-phnucl-th

classification hep-thhep-phnucl-th
keywords momentumspinangularcanonicalpseudogaugealgebraenergyfreedom
verification ladder T0 review T1 audit T2 compute T3 formal
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The energy-momentum and spin tensors for a given theory can be replaced by alternative expressions that obey the same conservation laws for the energy, linear momentum, as well as angular momentum but, however, differ by the local redistribution of such quantities (with global energy, linear momentum, and angular momentum remaining unchanged). This arbitrariness is described in recent literature as the pseudogauge freedom or symmetry. In this letter, we analyze several pseudogauges used to formulate the relativistic hydrodynamics of particles with spin 1/2 and conclude that the canonical version of the spin tensor has an advantage over other forms as only the canonical definition defines the spin operators that fulfill the SO(3) algebra of angular momentum. This result sheds new light on the results encountered in recent papers demonstrating pseudogauge dependence of various physical quantities. It indicates that for spin-polarization observables, the canonical version is fundamentally better suited for building a connection between theory and experiment.

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  1. Dynamics of Hot QCD Matter 2024 -- Bulk Properties

    nucl-th 2024-12 conditional novelty 5.0 of 10

    This proceedings volume collects 19 conference contributions on the bulk properties of hot QCD matter, mostly extending established models and comparing them with lattice QCD and heavy-ion data.

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