First star-forming structures in fuzzy cosmic filaments
arXiv:1910.01653 · doi:10.1103/PhysRevLett.123.141301
Abstract
In hierarchical models of structure formation, the first galaxies form in low-mass dark matter potential wells, probing the behavior of dark matter on kiloparsec (kpc) scales. Even though these objects are below the detection threshold of current telescopes, future missions will open an observational window into this emergent world. In this Letter we investigate how the first galaxies are assembled in a `fuzzy' dark matter (FDM) cosmology where dark matter is an ultralight ~eV boson and the primordial stars are expected to form along dense dark matter filaments. Using a first-of-its-kind cosmological hydrodynamical simulation, we explore the interplay between baryonic physics and unique wavelike features inherent to FDM. In our simulation, the dark matter filaments show coherent interference patterns on the boson de Broglie scale and develop cylindrical soliton-like cores which are unstable under gravity and collapse into kpc-scale spherical solitons. Features of the dark matter distribution are largely unaffected by the baryonic feedback. On the contrary, the distributions of gas and stars, which do form along the entire filament, exhibit central cores imprinted by dark matter -- a smoking gun signature of FDM.
6 pages, 2 figures, accepted to Phys. Rev. Lett
References in corpus (8)
- Ultralight scalars as cosmological dark matter
- Cosmic Structure as the Quantum Interference of a Coherent Dark Wave
- Understanding the Core-Halo Relation of Quantum Wave Dark Matter, DM, from 3D Simulations
- A search for ultra-light axions using precision cosmological data
- Discreteness effects in simulations of Hot/Warm dark matter
- Lighting the Universe with filaments
- First star formation in ultra-light particle dark matter cosmology
- The Effect of Thermal Velocities on Structure Formation in N-body Simulations of Warm Dark Matter
Cited by in corpus (16)
- Cosmological structure formation in scalar field dark matter with repulsive self-interaction: The Incredible Shrinking Jeans Mass
- Barred spiral galaxies in modified gravity theories
- Rivers of Gas I.: Unveiling The Properties of High Redshift Filaments
- The clustering of gamma-ray bursts in the Hercules-Corona Borealis Great Wall: the largest structure in the Universe?
- Towards Cosmological Simulations of Dark Matter on Quantum Computers
- The cusp-core problem in gas-poor dwarf spheroidal galaxies
- Ejection of supermassive black holes and implications for merger rates in fuzzy dark matter haloes
- Can ultralight dark matter explain the age-velocity dispersion relation of the Milky Way disc: A revised and improved treatment
- Squeezing the Axion
- Incoherent localized structures and hidden coherent solitons from the gravitational instability of the Schrödinger-Poisson equation
- Obtaining a scalar fifth force via a broken-symmetry couple between the scalar field and matter
- Construction and evolution of equilibrium configurations of the Schrödinger-Poisson system in the Madelung frame
- The Sun: Light Dark Matter and Sterile Neutrinos
- Exploration of simple scenarios involving Fuzzy Dark Matter cores and gas at local scales
- Field moment expansion method for interacting Bosonic systems
- Exploring delaying and heating effects on the 21-cm signature of fuzzy dark matter