Beyond the Local Volume. II. Population Scaleheights and Ages of Ultracool Dwarfs in Deep HST/WFC3 Parallel Fields
Christian Aganze (1), Adam J. Burgasser (1), Matthew A. Malkan (2),, Christopher A. Theissen (1), Roberto A. Tejada Arevalo (3), Chih-Chun Hsu, (1), Daniella C. Bardalez Gagliuffi (4), Russell E. Ryan (5), Benne W., Holwerda (6) ((1) UCSD, (2) UCLA, (3) Princeton, (4) AMNH

TL;DR
This study analyzes ultracool dwarfs in deep HST fields to determine their population scaleheights and ages, revealing their distribution and formation history in the Milky Way beyond the local volume.
Contribution
It provides the first constraints on the scaleheights and ages of ultracool dwarfs using deep HST surveys, extending knowledge beyond the local 100 pc volume.
Findings
Scaleheights range from 153 to 249 pc depending on spectral type.
Estimated ages are around 2-3.6 Gyr, indicating a relatively young population.
Predicted UCD yield for JWST PASSAGES survey is comparable to current samples.
Abstract
Ultracool dwarfs represent a significant proportion of stars in the Milky Way,and deep samples of these sources have the potential to constrain the formation history and evolution of low-mass objects in the Galaxy. Until recently, spectral samples have been limited to the local volume (d<100 pc). Here, we analyze a sample of 164 spectroscopically-characterized ultracool dwarfs identified by Aganze et al. (2022) in the Hubble Space Telescope WFC3 Infrared Spectroscopic Parallel (WISP) Survey and 3D-HST. We model the observed luminosity function using population simulations to place constraints on scaleheights, vertical velocity dispersions and population ages as a function of spectral type. Our star counts are consistent with a power-law mass function and constant star formation history for ultracool dwarfs, with vertical scaleheights 249 pc for late M dwarfs,…
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