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Gravity and Nonlinear Symmetry Realisation

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arxiv 1904.06516 v3 pith:S4KNU2RX submitted 2019-04-13 gr-qc hep-th

classification gr-qchep-th
keywords statesnonlinearrealisationgravityinteractionmattermodelsuitable
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Application of nonlinear symmetry realisation technique to gravity is studied. We identify the simplest extensions of the Poincare group suitable for nonlinear realisation. Among them only one model is suitable for description of massless spin-2 states. This model, unlike general relativity, describes states with well-defined mass that lack a linear interaction with the matter states. We argue that this phenomenon points on a necessity to draw a distinction between gravitational states with well defined masses and states that participate in interaction with matter.

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  1. NLO observables for QCD-like theories and application to pion dark matter

    hep-ph 2025-09 conditional novelty 6.0 of 10

    NLO chiral perturbation theory for non-degenerate two-flavor real and pseudoreal gauge theories is derived, fitted to Sp(4) lattice data, and applied to pion dark matter self-interactions.

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