Gravitational waves from dark domain walls
arXiv:2401.02409 · doi:10.1088/1475-7516/2025/01/149
Abstract
For most of cosmic history, the evolution of our Universe has been governed by the physics of a 'dark sector', consisting of dark matter and dark energy, whose properties are only understood in a schematic way. The influence of these constituents is mediated exclusively by the force of gravity, meaning that insight into their nature must be gleaned from gravitational phenomena. The advent of gravitational-wave astronomy has revolutionised the field of black hole astrophysics, and opens a new window of discovery for cosmological sources. Relevant examples include topological defects, such as domain walls or cosmic strings, which are remnants of a phase transition. Here we present the first simulations of cosmic structure formation in which the dynamics of the dark sector introduces domain walls as a source of stochastic gravitational waves in the late Universe. We study in detail how the spectrum of gravitational waves is affected by the properties of the model, and extrapolate the results to scales relevant to the recent evidence for a stochastic gravitational wave background. Our relativistic implementation of the field dynamics paves the way for optimal use of the next generation of gravitational experiments to unravel the dark sector.
7 pages, 4 figures. Supplementary material and videos may be found at https://oyvindchristiansen.com/projects/symmetron_GWs . The code is available at https://github.com/oyvach/AsGRD . New version adds missing reference
References in corpus (34)
- Modified Gravity and Cosmology
- The Confrontation between General Relativity and Experiment
- The NANOGrav 15-year Data Set: Evidence for a Gravitational-Wave Background
- Search for an isotropic gravitational-wave background with the Parkes Pulsar Timing Array
- Searching for the nano-Hertz stochastic gravitational wave background with the Chinese Pulsar Timing Array Data Release I
- DESI 2024 VI: Cosmological Constraints from the Measurements of Baryon Acoustic Oscillations
- The second data release from the European Pulsar Timing Array III. Search for gravitational wave signals
- Symmetron Fields: Screening Long-Range Forces Through Local Symmetry Restoration
- A Test of the Cosmological Principle with Quasars
- Symmetron Cosmology
- A review of gravitational waves from cosmic domain walls
- General relativity and cosmic structure formation
- A Challenge to the Standard Cosmological Model
- gevolution: a cosmological N-body code based on General Relativity
- Releasing scalar fields: cosmological simulations of scalar-tensor theories for gravity beyond the static approximation
- Cosmological simulations of screened modified gravity out of the static approximation: effects on matter distribution
- Tests of scalar-tensor gravity
- More out of less: an excess integrated Sachs-Wolfe signal from supervoids mapped out by the Dark Energy Survey
- Seeing patterns in noise: Gigaparsec-scale `structures' that do not violate homogeneity
- Symmetron Scalar Fields: Modified Gravity, Dark Matter or Both?
- NANOGrav spectral index from melting domain walls
- Beyond freeze-in: Dark Matter via inverse phase transition and gravitational wave signal
- Domain walls coupled to matter: the symmetron example
- Lensing with generalized symmetrons
- Gravitational transitions via the explicitly broken symmetron screening mechanism
- Probing the high temperature symmetry breaking with gravitational waves from domain walls
- Principles of Gravitational-Wave Detection with Pulsar Timing Arrays
- Latfield2: A c++ library for classical lattice field theory
- Detecting Domain Walls in Laboratory Experiments
- Accurate Computation of the Screening of Scalar Fifth Forces in Galaxies
- asevolution: a relativistic N-body implementation of the (a)symmetron
- Stability of domain walls with inflationary fluctuations under potential bias, and gravitational wave signatures
- asimulation: Domain formation and impact on observables in resolved cosmological simulations of the (a)symmetron
- Environmental cosmic acceleration from a phase transition in the dark sector