JWST Lensed Quasar Dark Matter Survey III: Dark Matter Sensitive Flux Ratios and Warm Dark Matter Constraint from the Full Sample
R. E. Keeley, A. M. Nierenberg, D. Gilman, T. Treu, X. Du, C. Gannon, P. Mozumdar, K. C. Wong, H. Paugnat, S. Birrer, M. Malkan, A. J. Benson, K. N. Abazajian, T. Anguita, V. N. Bennert, S. G. Djorgovski, S. F. Hoenig, A. Kusenko, H. R. Larsson, T. Morishita, V. Motta

TL;DR
This study uses JWST observations of 31 lensed quasars to measure flux ratios sensitive to low-mass dark matter halos, providing new constraints on warm dark matter properties and the halo mass function.
Contribution
It introduces a novel analysis of JWST MIRI data to constrain warm dark matter particle mass and halo mass function turnover with improved sensitivity and robust modeling.
Findings
Half-mode mass constrained to <10^{7.8} M_sun with Bayes factor 10:1.
Improved sensitivity by a factor of 2 over previous analyses.
Strongest constraints to date on halo mass function turnover.
Abstract
We present the full sample of measurements of the warm dust emission of 31 strongly-lensed, multiply imaged quasars, observed with JWST MIRI multiband imaging, which we use to constrain the particle properties of dark matter. The strongly lensed warm dust region of quasars is compact and statistically sensitive to a population of dark matter halos down to masses of M. The high spatial resolution and infrared sensitivity of MIRI make it uniquely suited to measure multiply imaged warm dust emission from quasars and thus to infer the properties of low-mass dark halos. We use the measured flux ratios to test for a warm dark matter turnover in the halo mass function. To infer the dark matter parameters, we use a forward modeling pipeline which explores dark matter parameters while also accounting for tidal stripping effects on subhalos, globular clusters, and complex deflector…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Dark Matter and Cosmic Phenomena · Astronomy and Astrophysical Research
