Investigating the Ultra-diffuse Galaxy NGC5846_UDG1 through the Kinematics of its Rich Globular Cluster System

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Haacke, Lydia, Forbes, Duncan A., Gannon, Jonah S., Danieli, Shany, Brodie, Jean P., Pfeffer, Joel, Romanowsky, Aaron J., van Dokkum, Pieter, Janssens, Steven R., Buzzo, Maria Luisa, Shen, Zili
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866915227807776768
author Haacke, Lydia
Forbes, Duncan A.
Gannon, Jonah S.
Danieli, Shany
Brodie, Jean P.
Pfeffer, Joel
Romanowsky, Aaron J.
van Dokkum, Pieter
Janssens, Steven R.
Buzzo, Maria Luisa
Shen, Zili
author_facet Haacke, Lydia
Forbes, Duncan A.
Gannon, Jonah S.
Danieli, Shany
Brodie, Jean P.
Pfeffer, Joel
Romanowsky, Aaron J.
van Dokkum, Pieter
Janssens, Steven R.
Buzzo, Maria Luisa
Shen, Zili
contents Recent studies of ultra-diffuse galaxies (UDGs) have shown their globular cluster (GC) systems to be central in unveiling their remarkable properties and halo masses. Deep HST imaging revealed 54 GC candidates around the UDG NGC5846_UDG1 (UDG1), with a remarkable 13 per cent of the stellar light contained in the GC system. We present a kinematic analysis of UDG1's GC system from observations with the integral field spectrograph KCWI on the Keck II telescope. We measure recessional velocities for 19 GCs, confirming them as members of UDG1, giving a total of 20 confirmed GCs when combined with literature. Approximately 9 per cent of the stellar light are contained just in the confirmed GCs. We determine the GC system's velocity dispersion to be $σ_{\rm GC}$=29.8$^{+6.4}_{-4.9}$ km s$^{-1}$. We find that $σ_{\rm GC}$ increases with increasing magnitude, consistent with predictions for a GC system that evolved under the influence of dynamical friction. The GC system velocity dispersion is constant out to $\sim1R_{\rm eff}$. Using $σ_{\rm GC}$, we calculate $M_{\rm dyn}$=$2.09^{+1.00}_{-0.64}\times$10$^{9}$M$_{\odot}$ as the dynamical mass enclosed within $\sim$2.5 kpc. The dark matter halo mass suggested by the GC number-halo mass relationship agrees with our dynamical mass estimate, implying a halo more massive than suggested by common stellar mass-halo mass relationships. UDG1, being GC-rich with a massive halo, fits the picture of a failed galaxy.
format Preprint
id arxiv_https___arxiv_org_abs_2504_03132
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Investigating the Ultra-diffuse Galaxy NGC5846_UDG1 through the Kinematics of its Rich Globular Cluster System
Haacke, Lydia
Forbes, Duncan A.
Gannon, Jonah S.
Danieli, Shany
Brodie, Jean P.
Pfeffer, Joel
Romanowsky, Aaron J.
van Dokkum, Pieter
Janssens, Steven R.
Buzzo, Maria Luisa
Shen, Zili
Astrophysics of Galaxies
Recent studies of ultra-diffuse galaxies (UDGs) have shown their globular cluster (GC) systems to be central in unveiling their remarkable properties and halo masses. Deep HST imaging revealed 54 GC candidates around the UDG NGC5846_UDG1 (UDG1), with a remarkable 13 per cent of the stellar light contained in the GC system. We present a kinematic analysis of UDG1's GC system from observations with the integral field spectrograph KCWI on the Keck II telescope. We measure recessional velocities for 19 GCs, confirming them as members of UDG1, giving a total of 20 confirmed GCs when combined with literature. Approximately 9 per cent of the stellar light are contained just in the confirmed GCs. We determine the GC system's velocity dispersion to be $σ_{\rm GC}$=29.8$^{+6.4}_{-4.9}$ km s$^{-1}$. We find that $σ_{\rm GC}$ increases with increasing magnitude, consistent with predictions for a GC system that evolved under the influence of dynamical friction. The GC system velocity dispersion is constant out to $\sim1R_{\rm eff}$. Using $σ_{\rm GC}$, we calculate $M_{\rm dyn}$=$2.09^{+1.00}_{-0.64}\times$10$^{9}$M$_{\odot}$ as the dynamical mass enclosed within $\sim$2.5 kpc. The dark matter halo mass suggested by the GC number-halo mass relationship agrees with our dynamical mass estimate, implying a halo more massive than suggested by common stellar mass-halo mass relationships. UDG1, being GC-rich with a massive halo, fits the picture of a failed galaxy.
title Investigating the Ultra-diffuse Galaxy NGC5846_UDG1 through the Kinematics of its Rich Globular Cluster System
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2504.03132