Gravitational lensing by wave dark matter halos
arXiv:1707.09929 · doi:10.3847/1538-4357/aafaf0
Abstract
Wave Dark Matter (WaveDM) has recently gained attention as a viable candidate to account for the dark matter content of the Universe. In this paper we explore the extent to which dark matter halos in this model, and under what conditions, are able to reproduce strong lensing systems. First, we analytically explore the lensing properties of the model -- finding that a pure WaveDM density profile, a soliton profile, produces a weaker lensing effect than other similar cored profiles. Then we analyze models with a soliton embedded in an NFW profile, as has been found in numerical simulations of structure formation. We use a benchmark model with a boson mass of , for which we see that there is a bi-modality in the contribution of the external NFW part of the profile, and actually some of the free parameters associated with it are not well constrained. We find that for configurations with boson masses -- , a range of masses preferred by dwarf galaxy kinematics, the soliton profile alone can fit the data but its size is incompatible with the luminous extent of the lens galaxies. Likewise, boson masses of the order of , which would be consistent with Lyman- constraints and consist of more compact soliton configurations, necessarily require the NFW part in order to reproduce the observed Einstein radii. We then conclude that lens systems impose a conservative lower bound and that the NFW envelope around the soliton must be present to satisfy the observational requirements.
26 pages, 7 figures, Published
References in corpus (19)
- Ultralight scalars as cosmological dark matter
- Small-Scale Challenges to the CDM Paradigm
- Too big to fail? The puzzling darkness of massive Milky Way subhaloes
- 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
- The Sloan Lens ACS Survey. V. The Full ACS Strong-Lens Sample
- Galaxy Formation with BECDM: I. Turbulence and relaxation of idealised haloes
- Axion dark matter, solitons, and the cusp-core problem
- A precise extragalactic test of General Relativity
- Cosmological parameters from strong gravitational lensing and stellar dynamics in elliptical galaxies
- Cosmological particle-in-cell simulations with ultralight axion dark matter
- Cosmological Perturbations of Extreme Axion in the Radiation Era
- The last 6 Gyr of dark matter assembly in massive galaxies from the Kilo Degree Survey
- Dwarf spheroidal galaxies and Bose-Einstein condensate dark matter
- Hints on halo evolution in SFDM models with galaxy observations
- Halo Abundance and Assembly History with Extreme-Axion Wave Dark Matter at
- Mass density slope of elliptical galaxies from strong lensing and resolved stellar kinematics
- A spiral galaxy's mass distribution uncovered through lensing and dynamics
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- Scalar field dark matter with a cosh potential, revisited
- Scalar dark matter vortex stabilization with black holes
- Stable soliton dark matter wormhole in non-minimally coupled gravity
- Gravitational wave lensing: probing Fuzzy Dark Matter with LISA
- Galaxy dynamics tracing quantum cosmology beyond CDM below the de Sitter scale of acceleration
- A dense dark matter core of the subhalo in the strong lensing system JVAS B1938+666