Detecting and Characterizing Mg ii Absorption in DESI Survey Validation Quasar Spectra

Author:

Napolitano LucasORCID,Pandey Agnesh,Myers Adam D.,Lan Ting-WenORCID,Anand AbhijeetORCID,Aguilar JessicaORCID,Ahlen StevenORCID,Alexander David M.ORCID,Brooks DavidORCID,Canning Rebecca,Circosta Chiara,De La Macorra Axel,Doel Peter,Eftekharzadeh Sarah,Fawcett Victoria A.ORCID,Font-Ribera AndreuORCID,Garcia-Bellido JuanORCID,Gontcho A Gontcho SatyaORCID,Le Guillou L.ORCID,Guy JulienORCID,Honscheid Klaus,Juneau StephanieORCID,Kisner T.ORCID,Landriau MartinORCID,Meisner Aaron M.ORCID,Miquel RamonORCID,Moustakas J.ORCID,Percival Will J.ORCID,Prochaska J. XavierORCID,Schubnell Michael,Tarlé GregoryORCID,Weaver B. A.,Weiner BenjaminORCID,Zhou ZhiminORCID,Zou HuORCID,Zou SiweiORCID

Abstract

Abstract We present findings of the detection of Magnesium II (Mg ii, λ = 2796, 2803 Å) absorbers from the early data release of the Dark Energy Spectroscopic Instrument (DESI). DESI is projected to obtain spectroscopy of approximately 3 million quasars (QSOs), of which over 99% are anticipated to be at redshifts greater than z > 0.3, such that DESI would be able to observe an associated or intervening Mg ii absorber illuminated by the background QSO. We have developed an autonomous supplementary spectral pipeline that detects these systems through an initial line-fitting process and then confirms the line properties using a Markov Chain Monte Carlo sampler. Based upon a visual inspection of the resulting systems, we estimate that this sample has a purity greater than 99%. We have also investigated the completeness of our sample in regard to both the signal-to-noise properties of the input spectra and the rest-frame equivalent width (W 0) of the absorber systems. From a parent catalog containing 83,207 quasars, we detect a total of 23,921 Mg ii absorption systems following a series of quality cuts. Extrapolating from this occurrence rate of 28.8% implies a catalog at the completion of the five-year DESI survey that will contain over eight hundred thousand Mg ii absorbers. The cataloging of these systems will enable significant further research because they carry information regarding circumgalactic medium environments, the distribution of intervening galaxies, and the growth of metallicity across the redshift range 0.3 ≤ z < 2.5.

Funder

U.S. Department of Energy

Wyoming Space Grant Consortium

Ministry of Science and Technology, Taiwan

Ministry of Education

National Taiwan University

National Science Foundation

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

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