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Main Authors: Khoperskov, Alexander V., Khrapov, Sergey S., Sirotin, Danila S.
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2412.03100
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author Khoperskov, Alexander V.
Khrapov, Sergey S.
Sirotin, Danila S.
author_facet Khoperskov, Alexander V.
Khrapov, Sergey S.
Sirotin, Danila S.
contents The dynamics of the merger of a dwarf disc galaxy with a massive spiral galaxy of the Milky Way type have been studied in detail. The remnant of such interaction after numerous crossings of the satellite through the disc of the main galaxy is a compact stellar core, the characteristics of which are close to small compact elliptical galaxies (cEs) or large ultra-compact dwarfs (UCDs). Such transitional cE/UCD objects with an effective radius of 100-200 pc arise as a result of stripping the outer layers of the stellar core during the destruction of a disc dwarf galaxy. Numerical models of the satellite before interaction include baryonic matter (stars and gas) and dark mass. We use N-body to describe the dynamics of stars and dark matter and Smoothed-Particle Hydrodynamics to model the gas components of both galaxies. The direct method of calculating the gravitational force between all particles provides a qualitative resolution of spatial structures up to 10 pc. The simulated cE/UCD galaxies contain very little gas and dark matter at the end of their evolution.
format Preprint
id arxiv_https___arxiv_org_abs_2412_03100
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Formation of Transitional cE/UCD Galaxies through Massive/Dwarf Disc Galaxy Mergers
Khoperskov, Alexander V.
Khrapov, Sergey S.
Sirotin, Danila S.
Astrophysics of Galaxies
The dynamics of the merger of a dwarf disc galaxy with a massive spiral galaxy of the Milky Way type have been studied in detail. The remnant of such interaction after numerous crossings of the satellite through the disc of the main galaxy is a compact stellar core, the characteristics of which are close to small compact elliptical galaxies (cEs) or large ultra-compact dwarfs (UCDs). Such transitional cE/UCD objects with an effective radius of 100-200 pc arise as a result of stripping the outer layers of the stellar core during the destruction of a disc dwarf galaxy. Numerical models of the satellite before interaction include baryonic matter (stars and gas) and dark mass. We use N-body to describe the dynamics of stars and dark matter and Smoothed-Particle Hydrodynamics to model the gas components of both galaxies. The direct method of calculating the gravitational force between all particles provides a qualitative resolution of spatial structures up to 10 pc. The simulated cE/UCD galaxies contain very little gas and dark matter at the end of their evolution.
title Formation of Transitional cE/UCD Galaxies through Massive/Dwarf Disc Galaxy Mergers
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2412.03100