Thermal channels of scalar and tensor waves in Jordan-frame scalar--tensor gravity
arXiv:2603.27386 · doi:10.1103/xwys-64rz
Abstract
We study first-order scalar and tensor perturbations of Jordan-frame scalar--tensor gravity about a spatially flat FLRW background using the Einstein-like effective-fluid decomposition of the scalar sector. In the scalar-gradient frame, we derive the perturbed effective density, pressure, heat flux, and anisotropic stress, and show that they admit an exact Eckart-type constitutive identification at linear order. We then show that these same quantities appear explicitly and exhaustively in the linearized field equations: the scalar Hamiltonian, momentum, trace, and traceless Einstein-like equations are governed, respectively, by the effective density, heat-flux, pressure, and anisotropic-stress channels, while the tensor propagation equation is governed by the transverse-traceless anisotropic-stress channel. In particular, the Jordan-frame modification of gravitational-wave damping is identified with the effective transverse-traceless anisotropic stress of the scalar sector. We also derive the perturbed evolution equation for the invariant product , clarify its gauge behavior, and show that flux matching on FLRW fixes only the background value , not its perturbation. These results leave open the possibility that gravitational waves in scalar--tensor gravity admit a deeper thermodynamic characterization, perhaps even an intrinsic one, although the present analysis establishes this only at the level of an effective constitutive description.
19 pages
References in corpus (18)
- Horndeski theory and beyond: a review
- The CosmoVerse White Paper: Addressing observational tensions in cosmology with systematics and fundamental physics
- Modified Gravity and Cosmology: An Update by the CANTATA Network
- Anisotropic stress as signature of non-standard propagation of gravitational waves
- Second-order Gauge Invariant Cosmological Perturbation Theory: -- Einstein equations in terms of gauge invariant variables --
- First-order thermodynamics of Horndeski gravity
- Thermodynamics of scalar-tensor gravity
- First-order thermodynamics of scalar-tensor cosmology
- Scalar field as a perfect fluid: thermodynamics of minimally coupled scalars and Einstein frame scalar-tensor gravity
- Gauge invariant perturbations of Scalar-Tensor Cosmologies: The vacuum case
- More on the first-order thermodynamics of scalar-tensor and Horndeski gravity
- Fluid nature constrains Horndeski gravity
- Thermal stability of stealth and de Sitter spacetimes in scalar-tensor gravity
- Thermal origin of the attractor-to-general-relativity in scalar-tensor gravity
- First-order thermodynamics of Horndeski cosmology
- The evolution of tensor perturbations in scalar-tensor theories of gravity
- Eckart heat-flux applicability in theories and the existence of temperature gradients
- Thermal description of braneworld effective theories