4.7 Article

The GALAH survey: chemodynamics of the solar neighbourhood

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OXFORD UNIV PRESS
DOI: 10.1093/mnras/staa335

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Galaxy: abundances; Galaxy: kinematics and dynamics; Galaxy: stellar content; Galaxy: structure

资金

  1. Australian Research Council Centre of Excellence or All Sky Astrophysics in 3 Dimensions (ASTRO 3D) [CE170100013]
  2. ARC DP grant [DP160103747]
  3. Slovenian Research Agency [P1-0188]
  4. Australian Laureate Fellowship from the ARC
  5. Australian Research Council [DP180101791]
  6. STFC [ST/M002047/1, ST/P00556X/1, ST/L005077/1] Funding Source: UKRI

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We present the chemodynamic structure of the solar neighbourhood using 55 652 stars within a 500 pc volume around the Sun observed by GALAH and with astrometric parameters from Gala DR2. We measure the velocity dispersion for all three components (vertical, radial, and tangential) and find that it varies smoothly with [Fe/H] and [alpha/Fe] for each component. The vertical component is especially clean, with alpha(vz) increasing from a low of 10 km s(-1) at solar [alpha/Fe] and [Fe/H] to a high of more than 50 km s(-1) for more metal-poor and [alpha/Fe] enhanced populations. We find no evidence of a large decrease in the velocity dispersion of the highest [alpha/Fe] populations as claimed in surveys prior to Gaia DR2. The eccentricity distribution for local stars varies most strongly as a function of [alpha/Fe], where stars with [alpha/Fe] < 0.1 dex having generally circular orbits (e < 0.15), while the median eccentricity increases rapidly for more [alpha/Fe] enhanced stellar populations up to e similar to 0.35. These [alpha/Fe] enhanced populations have guiding radii consistent with origins in the inner Galaxy. Of the stars with metallicities much higher than the local interstellar medium ([Fe/H] > 0.1 dex), we find that the majority have e < 0.2 and are likely observed in the solar neighbourhood through churning/migration rather than blurring effects, as the epicyclic motion for these stars is not large enough to reach the radii at which they were likely born based on their metallicity.

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Article Astronomy & Astrophysics

The SAMI Galaxy Survey: Environmental analysis of the orbital structures of passive galaxies

Giulia Santucci, Sarah Brough, Jesse van de Sande, Richard McDermid, Stefania Barsanti, Joss Bland-Hawthorn, Julia J. Bryant, Scott M. Croom, Claudia Lagos, Jon S. Lawrence, Matt S. Owers, Glenn van de Ven, Sam P. Vaughan, Sukyoung K. Yi

Summary: Most dynamical models of galaxies assume axisymmetry but this is not the case for a significant fraction of massive galaxies. Using Schwarzschild models, we reconstructed the inner orbital structure and mass distribution of 153 passive galaxies observed by the SAMI Galaxy Survey. We found that environment plays a role in shaping the internal structures and properties of these galaxies, with denser regions exhibiting more radial anisotropy.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2023)

Article Astronomy & Astrophysics

The MAGPI Survey: impact of environment on the total internal mass distribution of galaxies in the last 5 Gyr

Caro Derkenne, Richard M. McDermid, Adriano Poci, J. Trevor Mendel, Francesco D'Eugenio, Seyoung Jeon, Rhea-Silvia Remus, Sabine Bellstedt, Andrew J. Battisti, Joss Bland-Hawthorn, Anna Ferre-Mateu, Caroline Foster, K. E. Harborne, Claudia D. P. Lagos, Yingjie Peng, Piyush Sharda, Gauri Sharma, Sarah Sweet, Kim-Vy H. Tran, Lucas M. Valenzuela, Sam Vaughan, Emily Wisnioski, Sukyoung K. Yi

Summary: We investigate the impact of environment on the internal mass distribution of galaxies using the MAGPI survey. We find that galaxies in high density clusters have less centrally concentrated mass distribution compared to galaxies in low-to-mid density environments. Our results suggest that environment plays a role in the internal mass distribution of galaxies, with no evolution of the slope in the last 3-4 Gyr.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2023)

Article Astronomy & Astrophysics

S 5 : Probing the Milky Way and Magellanic Clouds potentials with the 6D map of the Orphan-Chenab stream

Sergey E. Koposov, Denis Erkal, Ting S. Li, Gary S. Da Costa, Lara R. Cullinane, Alexander P. Ji, Kyler Kuehn, Geraint F. Lewis, Andrew B. Pace, Nora Shipp, Daniel B. Zucker, Joss Bland-Hawthorn, Sophia Lilleengen, Sarah L. Martell

Summary: We present a 6D map of the Orphan-Chenab (OC) stream by combining the data from S-5 and Gaia, which reveals its properties such as luminosity, metallicity, and physical width. The stream shows a constant line-of-sight velocity dispersion despite drastic changes in its physical width. Our measurements allow us to constrain the mass profiles of the Milky Way and the Large Magellanic Cloud (LMC), revealing the extent of the LMC dark matter halo.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2023)

Article Astronomy & Astrophysics

Can radial motions in the stellar halo constrain the rate of change of mass in the Galaxy?

Sanjib Sharma, Joss Bland-Hawthorn, Joseph Silk, Celine Boehm

Summary: By studying the radial motion of stars in the stellar halo of the galaxy, we can constrain the rate of change of mass in the galaxy, including dark matter decay. Most stellar haloes have small radial motions, which can be further reduced by removing substructures. This research is important for determining dark matter decay parameters.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2023)

Article Astronomy & Astrophysics

Chemical evolution with radial mixing redux: a detailed model for formation and evolution of the Milky Way

Boquan Chen, Michael R. Hayden, Sanjib Sharma, Joss Bland-Hawthorn, Chiaki Kobayashi, Amanda Karakas

Summary: We propose a multizone galactic chemical evolution model that considers the most recently updated nucleosynthesis yields. The model incorporates physical processes such as gas feedback, radial flow of gas, infall of fresh gas, and radial migration. We analyze the impact of these processes on the observed properties of the Milky Way. The model successfully reproduces the observed distribution of stars in terms of metallicity and alpha-to-iron ratio.

MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY (2023)

Article Astronomy & Astrophysics

Estimating the selection function of Gaia DR3 subsamples

Alfred Castro-Ginard, Anthony G. A. Brown, Zuzanna Kostrzewa-Rutkowska, Tristan Cantat-Gaudin, Ronald Drimmel, Semyeong Oh, Vasily Belokurov, Andrew R. Casey, Morgan Fouesneau, Shourya Khanna, Adrian M. Price-Whelan, Hans-Walter Rix

Summary: This article introduces a new method for estimating the selection function of stellar subsamples in the Gaia catalogue. By comparing the number of stars in a given subsample to the overall Gaia catalogue, the probability of subsample membership is determined, differentiating between selection effects and random absence. The method is applied to compute the selection function for the Gaia-Sausage/Enceladus sample, confirming that the apparent asymmetry of its debris is caused by selection effects.

ASTRONOMY & ASTROPHYSICS (2023)

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