TDCOSMO III: Dark matter substructure meets dark energy -- the effects of (sub)halos on strong-lensing measurements of
arXiv:2007.01308 · doi:10.1051/0004-6361/202038829
Abstract
Time delay cosmography uses the arrival time delays between images in strong gravitational lenses to measure cosmological parameters, in particular the Hubble constant . The lens models used in time delay cosmography omit dark matter subhalos and line-of-sight halos because their effects are assumed to be negligible. We explicitly quantify this assumption by analyzing mock lens systems that include full populations of dark matter subhalos and line-of-sight halos, applying the same modeling assumptions used in the literature to infer . We base the mock lenses on six quadruply-imaged quasars that have delivered measurements of the Hubble constant, and quantify the additional uncertainties and/or bias on a lens-by-lens basis. We show that omitting dark substructure does not bias inferences of . However, perturbations from substructure contribute an additional source of random uncertainty in the inferred value of that scales as the square root of the lensing volume divided by the longest time delay. This additional source of uncertainty, for which we provide a fitting function, ranges from . It may need to be incorporated in the error budget as the precision of cosmographic inferences from single lenses improves, and sets a precision limit on inferences from single lenses.
accepted by Astronomy and Astrophysics
References in corpus (13)
- Large Magellanic Cloud Cepheid Standards Provide a 1% Foundation for the Determination of the Hubble Constant and Stronger Evidence for Physics Beyond LambdaCDM
- The Expansion of the Universe is Faster than Expected
- H0LiCOW V. New COSMOGRAIL time delays of HE0435-1223: to 3.8% precision from strong lensing in a flat CDM model
- Multiple Images of a Highly Magnified Supernova Formed by an Early-Type Cluster Galaxy Lens
- H0LiCOW IV. Lens mass model of HE 0435-1223 and blind measurement of its time-delay distance for cosmology
- Analytic models of plausible gravitational lens potentials
- Gravitational Lens Time Delays: A Statistical Assessment of Lens Model Dependences and Implications for the Global Hubble Constant
- COSMOGRAIL XVI: Time delays for the quadruply imaged quasar DES J0408-5354 with high-cadence photometric monitoring
- Microlensing Makes Lensed Quasar Time Delays Significantly Time Variable
- Multi-wavelength study of the gravitational lens system RXS J1131-1231: III. Long slit spectroscopy: micro-lensing probes the QSO structure
- Over-constrained Gravitational Lens Models and the Hubble Constant
- On the Power Spectrum of Dark Matter Substructure in Strong Gravitational Lenses
- Quantifying the Line-of-Sight Halo Contribution to the Dark Matter Convergence Power Spectrum from Strong Gravitational Lenses
Cited by in corpus (32)
- TDCOSMO. XII. Improved Hubble constant measurement from lensing time delays using spatially resolved stellar kinematics of the lens galaxy
- TDCOSMO V: strategies for precise and accurate measurements of the Hubble constant with strong lensing
- The tidal evolution of dark matter substructure -- II. The impact of artificial disruption on subhalo mass functions and radial profiles
- Breaking the mass-sheet degeneracy with gravitational wave interference in lensed events
- The Hubble constant from strongly lensed supernovae with standardizable magnifications
- Improved time-delay lens modelling and inference with transient sources
- TDCOSMO. IX. Systematic comparison between lens modelling software programs: time delay prediction for WGD 2038-4008
- Project Dinos I: A joint lensing-dynamics constraint on the deviation from the power law in the mass profile of massive ellipticals
- TDCOSMO 2025: Cosmological constraints from strong lensing time delays
- Testing strong lensing subhalo detection with a cosmological simulation
- TDCOSMO X. Automated Modeling of 9 Strongly Lensed Quasars and Comparison Between Lens Modeling Software
- On the detection and precise localisation of merging black holes events through strong gravitational lensing
- SLITronomy: towards a fully wavelet-based strong lensing inversion technique
- Introducing the AIDA-TNG project: galaxy formation in alternative dark matter models
- Detecting low-mass haloes with strong gravitational lensing II: constraints on the density profiles of two detected subhaloes
- The impact of human expert visual inspection on the discovery of strong gravitational lenses
- HOLISMOKES -- V. Microlensing of type II supernovae and time-delay inference through spectroscopic phase retrieval
- Measuring line-of-sight shear with Einstein rings: a proof of concept
- Gravitational lenses in arbitrary space-times
- TDCOSMO VIII: A key test of systematics in the hierarchical method of time-delay cosmography
- TDCOSMO. XI. New lensing galaxy redshift and velocity dispersion measurements from Keck spectroscopy of eight lensed quasar systems
- Simulating time-varying strong lenses
- Point-spread function reconstruction of adaptive-optics imaging: Meeting the astrometric requirements for time-delay cosmography
- Strong Lensing and
- LensWatch. II. Improved Photometry and Time-delay Constraints on the Strongly Lensed Type Ia Supernova 2022qmx ("SN Zwicky") with HST Template Observations
- Challenges and Opportunities for time-delay cosmography with multi-messenger gravitational lensing
- TDCOSMO: XX. WFI2033--4723, the First Quadruply-Imaged Quasar Modeled with JWST Imaging
- A forward-modelling method to infer the dark matter particle mass from strong gravitational lenses
- HOLISMOKES -- XIV. Time-delay and differential dust extinction determination with lensed type II supernova color curves
- Investigating the relation between environment and internal structure of massive elliptical galaxies using strong lensing
- SHARP VIII: J0924+0219 lens mass distribution and time-delay prediction through adaptive-optics imaging
- JAXtronomy: A JAX port of lenstronomy