paper

Conservative cosmology in scalar-tensor Herglotz gravity

arXiv:2602.23882 · doi:10.1088/1361-6382/ae49db

Abstract

The scalar-tensor representation of gravity is extended to incorporate the Herglotz variational principle. The field equations are derived in both the geometric and scalar-tensor frameworks. Although the divergence of the energy-momentum tensor in matter-geometry coupling theories is generally nonvanishing, conservation can be achieved through the introduction of the Herglotz vector. The generalized Friedmann equations in scalar-tensor Herglotz theory are obtained, and a conservative cosmological model is shown to be consistent with late-time observational data. Comparisons with analogous nonconservative models and with the standard CDM model are also provided.

17 pages, 3 figures, to appear in Classical and Quantum Gravity (CQG)