Strong gravitational lensing’s ‘external shear’ is not shear

Author:

Etherington Amy12ORCID,Nightingale James W12ORCID,Massey Richard12ORCID,Tam Sut-Ieng3ORCID,Cao XiaoYue45ORCID,Niemiec Anna1ORCID,He Qiuhan2ORCID,Robertson Andrew6ORCID,Li Ran45,Amvrosiadis Aristeidis2ORCID,Cole Shaun2ORCID,Diego Jose M7ORCID,Frenk Carlos S2ORCID,Frye Brenda L8ORCID,Harvey David9ORCID,Jauzac Mathilde121011ORCID,Koekemoer Anton M10ORCID,Lagattuta David J1ORCID,Lange Samuel2ORCID,Limousin Marceau11ORCID,Mahler Guillaume1ORCID,Sirks Ellen12ORCID,Steinhardt Charles L13ORCID

Affiliation:

1. Department of Physics, Centre for Extragalactic Astronomy, Durham University , South Rd, Durham, DH1 3LE , UK

2. Department of Physics, Institute for Computational Cosmology, Durham University , South Road, Durham DH1 3LE , UK

3. Academia Sinica Institute of Astronomy and Astrophysics (ASIAA) , No. 1, Sec. 4, Roosevelt Road, Taipei 10617 , Taiwan

4. School of Astronomy and Space Science, University of Chinese Academy of Sciences , Beijing 100049 , China

5. National Astronomical Observatories, Chinese Academy of Sciences , 20A Datun Road, Chaoyang District, Beijing 100012 , China

6. Jet Propulsion Laboratory, California Institute of Technology , 4800 Oak Grove Drive, Pasadena, CA 91109 , USA

7. Instituto de Física de Cantabria (CSIC-UC) , Avda. Los Castros s/n, E-39005 Santander , Spain

8. Department of Astronomy/Steward Observatory, University of Arizona , 933 N Cherry Ave., Tucson, AZ 85721 , USA

9. Laboratoire d’Astrophysique, EPFL, Observatoire de Sauverny , CH-1290 Versoix , Switzerland

10. Aix Marseille University, CNRS, CNES, LAM , F-13388 Marseille , France

11. Space Telescope Science Institute , 3700 San Martin Dr, Baltimore, MD 21218 , USA

12. Sydney Consortium for Particle Physics and Cosmology, School of Physics, The University of Sydney , NSW 2006 , Australia

13. Niels Bohr Institute, University of Copenhagen , Lyngbyvej 2, København DK-Ø2100 , Denmark

Abstract

ABSTRACT The distribution of mass in galaxy-scale strong gravitational lenses is often modelled as an elliptical power-law plus ‘external shear’, which notionally accounts for neighbouring galaxies and cosmic shear along our line of sight. A small amount of external shear could come from these sources, but we show that the vast majority does not. Except in a handful of rare systems, the best-fitting values do not correlate with independent measurements of line-of-sight shear: from weak lensing in 45 Hubble Space Telescope images, or in 50 mock images of lenses with complex distributions of mass. Instead, the best-fit external shear is aligned with the major or minor axis of 88 per cent of lens galaxies; and the amplitude of the external shear increases if that galaxy is discy. We conclude that ‘external shear’ attached to a power-law model is not physically meaningful, but a fudge to compensate for lack of model complexity. Since it biases other model parameters that are interpreted as physically meaningful in several science analyses (e.g. measuring galaxy evolution, dark matter physics or cosmological parameters), we recommend that future studies of galaxy-scale strong lensing should employ more flexible mass models.

Funder

STFC

National Natural Science Foundation of China

K. C. Wong Education Foundation

ERC

UKRI

BIS

Durham University

Publisher

Oxford University Press (OUP)

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