Generalized multi-plane gravitational lensing: time delays, recursive lens equation, and the mass-sheet transformation
arXiv:1409.0015 · doi:10.1051/0004-6361/201424881
Abstract
We consider several aspects of the generalized multi-plane gravitational lens theory, in which light rays from a distant source are affected by several main deflectors, and in addition by the tidal gravitational field of the large-scale matter distribution in the Universe when propagating between the main deflectors. Specifically, we derive a simple expression for the time-delay function in this case, making use of the general formalism for treating light propagation in inhomogeneous spacetimes which leads to the characterization of distance matrices between main lens planes. Applying Fermat's principle, an alternative form of the corresponding lens equation is derived, which connects the impact vectors in three consecutive main lens planes, and we show that this form of the lens equation is equivalent to the more standard one. For this, some general relations for cosmological distance matrices are derived. The generalized multi-plane lens situation admits a generalized mass-sheet transformation, which corresponds to uniform isotropic scaling in each lens plane, a corresponding scaling of the deflection angle, and the addition of a tidal matrix (mass sheet plus external shear) to each main lens. We show that the time delay for sources in all lens planes scale with the same factor under this generalized mass-sheet transformation, thus precluding the use of time-delay ratios to break the mass-sheet transformation.
10 pages, 2 embedded figures. Submitted to A&A
References in corpus (12)
- Cosmology with Weak Lensing Surveys
- Cluster Lenses
- The Sloan Lens ACS Survey. VI: Discovery and analysis of a double Einstein ring
- Cosmological Constraints from the double source plane lens SDSSJ0946+1006
- A New Hybrid Framework to Efficiently Model Lines of Sight to Gravitational Lenses
- Quantifying Environmental and Line-of-Sight Effects in Models of Strong Gravitational Lens Systems
- GLAMER Part II: Multiple Plane Gravitational Lensing
- Line-of-Sight Structure Toward Strong Lensing Galaxy Clusters
- Can one determine cosmological parameters from multi-plane strong lens systems?
- Generalized shear-ratio tests: A new relation between cosmological distances, and a diagnostic for a redshift-dependent multiplicative bias in shear measurements
- The influence of the matter along the line of sight and in the lens environment on the strong gravitational lensing
- The influence of weak lensing on measurements of the Hubble constant with quad-image gravitational lenses
Cited by in corpus (12)
- Cluster-galaxy weak lensing
- On the accuracy of time-delay cosmography in the Frontier Fields Cluster MACS J1149.5+2223 with supernova Refsdal
- Line-of-sight effects in strong gravitational lensing
- Astrometric requirements for strong lensing time-delay cosmography
- GLASS: Generator for Large Scale Structure
- J1721+8842: The first Einstein zig-zag lens
- On the double-plane plasma lensing
- Interlopers speak out: studying the dark universe using small-scale lensing anisotropies
- Anisotropic strong lensing as a probe of dark matter self-interactions
- Strong-lensing and kinematic analysis of CASSOWARY 31: can strong lensing constrain the masses of multi-plane lenses?
- Line-of-sight effects on double source plane lenses
- Impact of Large-Scale Structure along Line-of-Sight on Time-Delay Cosmography