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Overview of the Instrumentation for the Dark Energy Spectroscopic Instrument

Authors :
DESI Collaboration
B. Abareshi
J. Aguilar
S. Ahlen
Shadab Alam
David M. Alexander
R. Alfarsy
L. Allen
C. Allende Prieto
O. Alves
J. Ameel
E. Armengaud
J. Asorey
Alejandro Aviles
S. Bailey
A. Balaguera-Antolínez
O. Ballester
C. Baltay
A. Bault
S. F. Beltran
B. Benavides
S. BenZvi
A. Berti
R. Besuner
Florian Beutler
D. Bianchi
C. Blake
P. Blanc
R. Blum
A. Bolton
S. Bose
D. Bramall
S. Brieden
A. Brodzeller
D. Brooks
C. Brownewell
E. Buckley-Geer
R. N. Cahn
Z. Cai
R. Canning
R. Capasso
A. Carnero Rosell
P. Carton
R. Casas
F. J. Castander
J. L. Cervantes-Cota
S. Chabanier
E. Chaussidon
C. Chuang
C. Circosta
S. Cole
A. P. Cooper
L. da Costa
M.-C. Cousinou
A. Cuceu
T. M. Davis
K. Dawson
R. de la Cruz-Noriega
A. de la Macorra
A. de Mattia
J. Della Costa
P. Demmer
M. Derwent
A. Dey
B. Dey
G. Dhungana
Z. Ding
C. Dobson
P. Doel
J. Donald-McCann
J. Donaldson
K. Douglass
Y. Duan
P. Dunlop
J. Edelstein
S. Eftekharzadeh
D. J. Eisenstein
M. Enriquez-Vargas
S. Escoffier
M. Evatt
P. Fagrelius
X. Fan
K. Fanning
V. A. Fawcett
S. Ferraro
J. Ereza
B. Flaugher
A. Font-Ribera
J. E. Forero-Romero
C. S. Frenk
S. Fromenteau
B. T. Gänsicke
C. Garcia-Quintero
L. Garrison
E. Gaztañaga
F. Gerardi
H. Gil-Marín
S. Gontcho A Gontcho
Alma X. Gonzalez-Morales
G. Gonzalez-de-Rivera
V. Gonzalez-Perez
C. Gordon
O. Graur
D. Green
C. Grove
D. Gruen
G. Gutierrez
J. Guy
C. Hahn
S. Harris
D. Herrera
Hiram K. Herrera-Alcantar
K. Honscheid
C. Howlett
D. Huterer
V. Iršič
M. Ishak
P. Jelinsky
L. Jiang
J. Jimenez
Y. P. Jing
R. Joyce
E. Jullo
S. Juneau
N. G. Karaçaylı
M. Karamanis
A. Karcher
T. Karim
R. Kehoe
S. Kent
D. Kirkby
T. Kisner
F. Kitaura
S. E. Koposov
A. Kovács
A. Kremin
Alex Krolewski
B. L’Huillier
O. Lahav
A. Lambert
C. Lamman
Ting-Wen Lan
M. Landriau
S. Lane
D. Lang
J. U. Lange
J. Lasker
L. Le Guillou
A. Leauthaud
A. Le Van Suu
Michael E. Levi
T. S. Li
C. Magneville
M. Manera
Christopher J. Manser
B. Marshall
Paul Martini
W. McCollam
P. McDonald
Aaron M. Meisner
J. Mena-Fernández
J. Meneses-Rizo
M. Mezcua
T. Miller
R. Miquel
P. Montero-Camacho
J. Moon
J. Moustakas
E. Mueller
Andrea Muñoz-Gutiérrez
Adam D. Myers
S. Nadathur
J. Najita
L. Napolitano
E. Neilsen
Jeffrey A. Newman
J. D. Nie
Y. Ning
G. Niz
P. Norberg
Hernán E. Noriega
T. O’Brien
A. Obuljen
N. Palanque-Delabrouille
A. Palmese
P. Zhiwei
D. Pappalardo
X. PENG
W. J. Percival
S. Perruchot
R. Pogge
C. Poppett
A. Porredon
F. Prada
J. Prochaska
R. Pucha
A. Pérez-Fernández
I. Pérez-Ràfols
D. Rabinowitz
A. Raichoor
S. Ramirez-Solano
César Ramírez-Pérez
C. Ravoux
K. Reil
M. Rezaie
A. Rocher
C. Rockosi
N. A. Roe
A. Roodman
A. J. Ross
G. Rossi
R. Ruggeri
V. Ruhlmann-Kleider
C. G. Sabiu
S. Gaines
K. Said
A. Saintonge
Javier Salas Catonga
L. Samushia
E. Sanchez
C. Saulder
E. Schaan
E. Schlafly
D. Schlegel
J. Schmoll
D. Scholte
M. Schubnell
A. Secroun
H. Seo
S. Serrano
Ray M. Sharples
Michael J. Sholl
Joseph Harry Silber
D. R. Silva
M. Sirk
M. Siudek
A. Smith
D. Sprayberry
R. Staten
B. Stupak
T. Tan
Gregory Tarlé
Suk Sien Tie
R. Tojeiro
L. A. Ureña-López
F. Valdes
O. Valenzuela
M. Valluri
M. Vargas-Magaña
L. Verde
M. Walther
B. Wang
M. S. Wang
B. A. Weaver
C. Weaverdyck
R. Wechsler
Michael J. Wilson
J. Yang
Y. Yu
S. Yuan
Christophe Yèche
H. Zhang
K. Zhang
Cheng Zhao
Rongpu Zhou
Zhimin Zhou
H. Zou
J. Zou
S. Zou
Y. Zu
Source :
The Astronomical Journal, Vol 164, Iss 5, p 207 (2022)
Publication Year :
2022
Publisher :
IOP Publishing, 2022.

Abstract

The Dark Energy Spectroscopic Instrument (DESI) embarked on an ambitious 5 yr survey in 2021 May to explore the nature of dark energy with spectroscopic measurements of 40 million galaxies and quasars. DESI will determine precise redshifts and employ the baryon acoustic oscillation method to measure distances from the nearby universe to beyond redshift z > 3.5, and employ redshift space distortions to measure the growth of structure and probe potential modifications to general relativity. We describe the significant instrumentation we developed to conduct the DESI survey. This includes: a wide-field, 3.°2 diameter prime-focus corrector; a focal plane system with 5020 fiber positioners on the 0.812 m diameter, aspheric focal surface; 10 continuous, high-efficiency fiber cable bundles that connect the focal plane to the spectrographs; and 10 identical spectrographs. Each spectrograph employs a pair of dichroics to split the light into three channels that together record the light from 360–980 nm with a spectral resolution that ranges from 2000–5000. We describe the science requirements, their connection to the technical requirements, the management of the project, and interfaces between subsystems. DESI was installed at the 4 m Mayall Telescope at Kitt Peak National Observatory and has achieved all of its performance goals. Some performance highlights include an rms positioner accuracy of better than 0.″1 and a median signal-to-noise ratio of 7 of the [O ii ] doublet at 8 × 10 ^−17 erg s ^−1 cm ^−2 in 1000 s for galaxies at z = 1.4–1.6. We conclude with additional highlights from the on-sky validation and commissioning, key successes, and lessons learned.

Details

Language :
English
ISSN :
15383881
Volume :
164
Issue :
5
Database :
Directory of Open Access Journals
Journal :
The Astronomical Journal
Publication Type :
Academic Journal
Accession number :
edsdoj.12c3dc317fb74b7c82355bda61f5075a
Document Type :
article
Full Text :
https://doi.org/10.3847/1538-3881/ac882b