Global Dynamic Scaling Relations of H i-rich Ultra-diffuse Galaxies

The baryonic Tully–Fisher relation (BTFR), which connects the baryonic mass of galaxies with their circular velocities, has been validated across a wide range of galaxies, from dwarf galaxies to massive galaxies. Recent studies have found that several ultra-diffuse galaxies (UDGs) deviate significan...

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Veröffentlicht in:Astrophysical journal. Letters 2023-04, Vol.947 (1), p.L9
Hauptverfasser: Hu, Hui-Jie, Guo, Qi, Zheng, Zheng, Yang, Hang, Tsai, Chao-Wei, Zhang, Hong-Xin, Zhang, Zhi-Yu
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Sprache:eng
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Zusammenfassung:The baryonic Tully–Fisher relation (BTFR), which connects the baryonic mass of galaxies with their circular velocities, has been validated across a wide range of galaxies, from dwarf galaxies to massive galaxies. Recent studies have found that several ultra-diffuse galaxies (UDGs) deviate significantly from the BTFR, indicating a galaxy population with abnormal dynamical properties. However, such studies were still confined within a small sample size. In this study, we used the 100% complete Arecibo Legacy Fast Arecibo L -band Feed Array (ALFALFA) to investigate the BTFR of 88 H i -rich UDGs (HUDGs), which is the largest UDG sample with dynamical information. We found that the HUDGs form a continuous distribution in the BTFR diagram, with high-velocity galaxies consistent with normal dwarf galaxies at a 1 σ level, and low-velocity galaxies deviating from the BTFR, in line with that reported in the literature. We point out that the observed deviation may be subject to various selection effects or systemic biases. Nevertheless, we found that the significance of the deviation of HUDGs from the BTFR and TFR are different, i.e., they either deviate from the BTFR or from the TFR. Our result indicates that a high gas fraction may play an important role in explaining the deviation of HUDGs from BTFR.
ISSN:2041-8205
2041-8213
DOI:10.3847/2041-8213/acc7a4