Please use this identifier to cite or link to this item: http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/9694
Title: Weak Gravitational Lensing around Low Surface Brightness Galaxies in the DES Year 3 Data
Authors: Chicoine, N.
ADHIKARI, SUSMITA et al.
Dept. of Physics
Keywords: Dark Energy Survey
DES
Weak Gravitational Lensing
Galaxies
Low Surface Brightness Galaxie
Sgalaxy-galaxy lensing
2024
Issue Date: Oct-2024
Publisher: Maynooth Academic Publishing
Citation: Open Journal of Astrophysics , 7.
Abstract: We present galaxy-galaxy lensing measurements using a sample of low surface brightness galaxies (LSBGs) drawn from the Dark Energy Survey Year 3 (Y3) data as lenses. LSBGs are diffuse galaxies with a surface brightness immer than the ambient night sky. These dark-matter-dominated objects are intriguing due to potentially unusual formation channels that lead to their diffuse stellar component. Given the faintness of LSBGs, using standard observational echniques to characterize their total masses proves challenging. Weak gravitational lensing, which is less sensitive to the stellar component of galaxies, could be a promising avenue to estimate the masses of LSBGs. Our LSBG sample consists of 23,790 galaxies separated into red and blue color types at and , respectively. Combined with the DES Y3 shear catalog, we measure the tangential shear around these LSBGs and find signal-to-noise ratios of 6.67 for the red sample, 2.17 for the blue sample, and 5.30 for the full sample. We use the clustering redshifts method to obtain redshift distributions for the red and blue LSBG samples. Assuming all red LSBGs are satellites, we fit a simple model to the measurements and estimate the host halo mass of these LSBGs to be . We place a 95% upper bound on the subhalo mass at . By contrast, we assume the blue LSBGs are centrals, and place a 95% upper bound on the halo mass at . We find that the stellar-to-halo mass ratio of the LSBG samples is consistent with that of the general galaxy population. This work illustrates the viability of using weak gravitational lensing to constrain the halo masses of LSBGs.
URI: https://doi.org/10.33232/001c.124536
http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/9694
ISSN: 2565-6120
Appears in Collections:JOURNAL ARTICLES

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