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Effects of Subhalos on Interpreting Highly Magnified Sources Near Lensing Caustics

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arxiv 2407.09594 v2 pith:QSESELNV submitted 2024-07-12 astro-ph.GA astro-ph.CO

classification astro-ph.GAastro-ph.CO
keywords subhaloscausticsmagnifiedclusterhighlysourcesaccountedatop
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Large magnification factors near gravitational lensing caustics of galaxy cluster lenses allow the study of individual stars or compact stellar associations at cosmological distances. We study how the presence of sub-galactic subhalos, an inevitable consequence of cold dark matter, can alter the property of caustics and hence change the interpretation of highly magnified sources that lie atop them. First, we consider a galaxy cluster halo populated with subhalos sampled from a realistic subhalo mass function calibrated to $N$-body simulations. Then, we compare a semi-analytical approximation and an adaptive ray-shooting method which we employ to quantify the property of the caustics. As a case study, we investigate Earendel, a $z = 6.2$ candidate of magnified single or multiple star system with a lone lensed image atop the critical curve in the Sunrise Arc. We find that the source size constraint ($\lesssim 0.3\, \mathrm{pc}$) previously derived from macro lens models should be relaxed by a factor of a few to ten when subhalos are accounted for, therefore allowing the possibility of a compact star cluster. The subhalos could introduce an astrometric perturbation that is $\lesssim 0.5''$, which does not contradict observation. These conclusions are largely robust to changes in the subhalo population. Subhalos therefore should be seriously accounted for when interpreting the astrophysical nature of similar highly magnified sources uncovered in recent high-$z$ observations.

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  1. Is Earendel a Star Cluster?: Metal Poor Globular Cluster Progenitors at $z\sim6$

    astro-ph.GA 2025-07 conditional novelty 6.0 of 10

    JWST spectra show Earendel's continuum is well fitted by a simple stellar population, suggesting it may be a young, metal-poor star cluster rather than a single star.

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