Physical Conditions of the Ionized Superwind in NGC 253 with VLT/MUSE
Abstract
We present an analysis of the Hα-emitting ionized gas in the warm phase of the NGC 253 outflow using integral field spectroscopy from the Multi Unit Spectroscopic Explorer. In each spaxel, we decompose Hα, [N ii], and [S ii] emission lines into a system of up to three Gaussian components, accounting for the velocity contributions due to the disk and both intercepted walls of an outflow cone. In the approaching southern lobe of the outflow, we find maximum deprojected outflow velocities down to â¼â500 km sâ1. Velocity gradients of this outflowing gas range from â¼â350 to â550 km sâ1 kpcâ1 with increasing distance from the nucleus. Additionally, [N ii]/Hα and [S ii]/Hα integrated line ratios are suggestive of shocks as the dominant ionization source throughout the wind. Electron densities, inferred from the [S ii] doublet, peak at 2100 cmâ3 near the nucleus and reach â²50 cmâ3 in the wind. Finally, at an uncertainty of 0.3 dex on the inferred mass of 4 à 105 Mâ, the mass-outflow rate of the Hα-emitting gas in the southern outflow lobe is â¼0.4 Mâ yrâ1. This yields a mass-loading factor of η â¼ 0.1 and a â¼2% starburst energy efficiency. © 2025. The Author(s). Published by the American Astronomical Society.
Más información
| Título según WOS: | Physical Conditions of the Ionized Superwind in NGC 253 with VLT/MUSE |
| Título de la Revista: | Astrophysical Journal |
| Volumen: | 987 |
| Número: | 1 |
| Editorial: | Institute of Physics |
| Fecha de publicación: | 2025 |
| Idioma: | English |
| DOI: |
10.3847/1538-4357/add738 |
| Notas: | ISI |