The mass profiles of dwarf galaxies from Dark Energy Survey lensing
Joseph Thornton, Alexandra Amon, Risa H. Wechsler, Susmita Adhikari,, Yao-Yuan Mao, Justin Myles, Marla Geha, Nitya Kallivayalil, Erik Tollerud,, Benjamin Weiner

TL;DR
This paper introduces a new method to measure the average dark matter halo profiles of dwarf galaxies using weak lensing data from the Dark Energy Survey, providing the first comprehensive measurements for such low-mass galaxies.
Contribution
It presents a novel approach combining photometric data and machine learning to select dwarf galaxies and measure their halo masses through weak lensing, advancing low-mass galaxy studies.
Findings
Median halo masses increase with stellar mass bin.
Halo profiles are consistent with NFW profiles.
Approximately 20% of the sample are satellites.
Abstract
We present a novel approach to extracting dwarf galaxies from photometric data to measure their average halo mass profile with weak lensing. We characterise their stellar mass and redshift distributions with a spectroscopic calibration sample. Using the multi-band photometry from Dark Energy Survey and redshifts from the Satellites Around Galactic Analogs (SAGA) survey with an unsupervised machine learning method, we select a low-mass galaxy sample spanning redshifts and divide it into three mass bins. From low to high median mass, the bins contain [146 420, 330 146, 275 028] galaxies and have median stellar masses of . We measure the stacked excess surface mass density profiles, , of these galaxies using galaxy--galaxy lensing with a…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Impact of Light on Environment and Health · Astronomy and Astrophysical Research
