Discovery of a Strong-lens Galaxy Pair with the Smallest Projected Separation
arXiv:2603.12790
Abstract
We present the spectroscopic confirmation and lens modeling of HSC~J02330205, a strong-lensing system produced by a close pair of elliptical galaxies at that lenses a multi-component background source at . The two deflectors are separated by only $0\arcsec.481\pm0\arcsec.004$ ( kpc), making this system a compact galaxy-pair lens at relatively high redshift. Joint five-band HSC lens modeling requires two mass components, with Einstein radii of $0\arcsec.774\pm0\arcsec.011$ and $0\arcsec.767\pm0\arcsec.014$, and yields a circularized Einstein radius of $θ_{\rm E}=1\arcsec.549\pm0\arcsec.018$ for the overall system. The lensed source is reconstructed with three components: two extended components separated by $0\arcsec.462\pm0\arcsec.013$ ( kpc), together with a compact component nearly aligned with one of them. Integrating the lensing convergence map within the critical curve gives a projected mass of . Combining this with the stellar mass inferred from SED fitting, , we obtain a projected dark-matter fraction within the critical curve of . Within the -band effective radii of the two deflectors, the corresponding dark-matter fractions are and , respectively. HSC~J02330205 is therefore a compact, high-redshift galaxy-pair lens. Future high-resolution imaging and spatially resolved spectroscopy will enable detailed tests of merger signatures, the redistribution of stellar and dark matter, and possible light--mass offsets in the lens plane.
8 Pages, 4 Figures