Published August 2021 | Version Published + Accepted Version
Journal Article Open

Elemental Abundances in M31: Gradients in the Giant Stellar Stream

  • 1. ROR icon Carnegie Observatories
  • 2. ROR icon Princeton University
  • 3. ROR icon Space Telescope Science Institute
  • 4. ROR icon Johns Hopkins University
  • 5. ROR icon California Institute of Technology
  • 6. ROR icon University of California, Santa Cruz

Abstract

We analyze existing measurements of [Fe/H] and [α/Fe] for individual red giant branch (RGB) stars in the Giant Stellar Stream (GSS) of M31 to determine whether spatial abundance gradients are present. These measurements were obtained from low- (R ~ 3000) and moderate- (R ~ 6000) resolution Keck/DEIMOS spectroscopy using spectral synthesis techniques as part of the Elemental Abundances in M31 survey. From a sample of 62 RGB stars spanning the GSS at 17, 22, and 33 projected kpc, we measure a [Fe/H] gradient of −0.018 ± 0.003 dex kpc⁻¹ and negligible [α/Fe] gradient with M31-centric radius. We investigate GSS abundance patterns in the outer halo using additional [Fe/H] and [α/Fe] measurements for six RGB stars located along the stream at 45 and 58 projected kpc. These abundances provide tentative evidence that the trends in [Fe/H] and [α/Fe] beyond 40 kpc in the GSS are consistent with those within 33 kpc. We also compare the GSS abundances to 65 RGB stars located along the possibly related Southeast (SE) shelf substructure at 12 and 18 projected kpc. The abundances of the GSS and SE shelf are consistent, supporting a common origin hypothesis, although this interpretation may be complicated by the presence of [Fe/H] gradients in the GSS. We discuss the abundance patterns in the context of photometric studies from the literature and explore implications for the properties of the GSS progenitor, suggesting that the high 〈[α/Fe]〉 of the GSS (+0.40 ± 0.05 dex) favors a major merger scenario for its formation.

Additional Information

© 2021. The Author(s). Published by the American Astronomical Society. Original content from this work may be used under the terms of the Creative Commons Attribution 4.0 licence. Any further distribution of this work must maintain attribution to the author(s) and the title of the work, journal citation and DOI. Received 2021 March 15; revised 2021 May 4; accepted 2021 May 5; published 2021 July 6. We thank the anonymous referee, whose careful reading of this paper improved its clarity. We thank Emily C. Cunningham for helpful comments on the manuscript and Stephen Gwyn for reducing the photometry for slitmask f123_1. I.E. was generously supported by a Carnegie-Princeton Fellowship through the Carnegie Observatories. This material is based upon work supported by the NSF under grants Nos. AST-1614081 (E.N.K.), AST-1614569 (K.M.G, J.W.), and AST-1412648 (P.G.). E.N.K gratefully acknowledges support from a Cottrell Scholar award administered by the Research Corporation for Science Advancement, as well as funding from generous donors to the California Institute of Technology. We are grateful to the many people who have worked to make the Keck Telescope and its instruments a reality and to operate and maintain the Keck Observatory. The authors wish to recognize and acknowledge the very significant cultural role and reverence that the summit of Maunakea has always had within the indigenous Hawaiian community. We are most fortunate to have the opportunity to conduct observations from this mountain. Facility: Keck (DEIMOS). Software: Astropy (Astropy Collaboration et al. 2013, 2018), emcee (Foreman-Mackey et al. 2013).

Attached Files

Published - Escala_2021_AJ_162_45.pdf

Accepted Version - 2105.02339.pdf

Files

2105.02339.pdf

Files (8.1 MB)

Name Size
md5:746fe407c477b65a6d5b6061806de550
1.5 MB Preview Download
md5:b258d9dc2a26308564f4618707afd176
6.6 MB Preview Download

Additional details

Identifiers

Eprint ID
109770
Resolver ID
CaltechAUTHORS:20210709-222308921

Related works

Funding

Carnegie-Princeton Fellowship
NSF
AST-1614081
NSF
AST-1614569
NSF
AST-1412648
Cottrell Scholar of Research Corporation
Caltech

Dates

Created
2021-07-09
Created from EPrint's datestamp field
Updated
2021-11-16
Created from EPrint's last_modified field

Caltech Custom Metadata

Caltech groups
Astronomy Department