arrow
Return

COMAP Early Science. I. Overview

delete2022-07-13
delete41
delete
OA
AI
K
Kieran Cleary *
P
Patrick C. Breysse
D
Dongwoo T. Chung
S
S. Church
C
C. L. Dickinson
H
H. K. Eriksen
M
Marie Kristine Foss
J
Joshua Ott Gundersen
S
Stuart Harper
R
R. W. Hobbs
H
H. T. Ihle
J
Junhan Kim
J
Jonathon Kocz
J
James W. Lamb
J
J. G. S. Lunde
H
Hamsa Padmanabhan
T
T. J. Pearson
L
Liju Philip
T
Travis Powell
M
Maren Rasmussen
A
A. C. S. Readhead
T
Thomas J. Rennie
M
Marta B. Silva
N
Nils-Ole Stutzer
B
Bade Uzgil
D
Duncan J. Watts
I
I. K. Wehus
T
Thomas Zentmeyer
L
Lilian Basoalto
J
J. Richard Bond
D
Delaney A. Dunne
T
T. Gaier
B
Brandon S. Hensley
L
Laura C. Keating
C
Charles R. Lawrence
N
Norman Murray
R
R. Paladini
R
R. Reeves
M
M. Viero
R
Risa H. Wechsler
DOI:10.3847/1538-4357/ac63ccdelete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
The CO Mapping Array Project (COMAP) aims to use line intensity mapping of carbon monoxide (CO) to trace the distribution and global properties of galaxies over cosmic time, back to the Epoch of Reionization (EoR). To validate the technologies and techniques needed for this goal, a Pathfinder instrument has been constructed and fielded. Sensitive to CO(1-0) emission from z=2.4-3.4 and a fainter contribution from CO(2-1) at z=6-8, the Pathfinder is surveying 12 deg(2) in a 5-year observing campaign to detect the CO signal from z similar to 3. Using data from the first 13 months of observing, we estimate P-CO(k)= -2.7 +/- 1.7 x 10(4) mu K-2 Mpc(3) on scales k=0.051-0.62 Mpc(-1), the first direct 3D constraint on the clustering component of the CO(1-0) power spectrum. Based on these observations alone, we obtain a constraint on the amplitude of the clustering component (the squared mean CO line temperature-bias product) of < Tb >(2) < 49 mu K-2, nearly an order-of-magnitude improvement on the previous best measurement. These constraints allow us to rule out two models from the literature. We forecast a detection of the power spectrum after 5 years with signal-to-noise ratio (S/N) 9-17. Cross-correlation with an overlapping galaxy survey will yield a detection of the CO-galaxy power spectrum with S/N of 19. We are also conducting a 30 GHz survey of the Galactic plane and present a preliminary map. Looking to the future of COMAP, we examine the prospects for future phases of the experiment to detect and characterize the CO signal from the EoR.
Keywords:
POWER SPECTRUM
HIGH-REDSHIFT
BLIND SEARCH
COSMIC TIME
CO EMISSION
GAS
DENSITY
PLANCK
FIELD
MODEL

Journal

Astrophysical Journal cover
Astrophysical Journal
IF:
5.4
Papers:
8.3W
Citations:
32.0W

Organization

C
California Institute of Technology
Scholars:
2.9W
Papers: 2.5W
Citations: 4.9W
J
jodrell bank centre for astrophysics
Scholars:
2.1K
Papers: 1.8K
Citations: 2
N
New York University
Scholars:
4.4W
Papers: 3.9W
Citations: 5.8W
S
Stanford University
Scholars:
9.6W
Papers: 8.2W
Citations: 17.0W
N
national aeronautics & space administration (nasa)
Scholars:
3.1W
Papers: 2.6W
Citations: 46
U
university of oslo
Scholars:
4.2W
Papers: 3.5W
Citations: 53
N
nasa jet propulsion laboratory (jpl)
Scholars:
6.9K
Papers: 5.3K
Citations: 14
University of California System cover
University of California System
Scholars:
37.5W
Papers: 33.7W
Citations: 6.6K
U
university of geneva
Scholars:
3.6W
Papers: 2.9W
Citations: 35
U
university of miami
Scholars:
3.4W
Papers: 2.6W
Citations: 32
U
university of toronto
Scholars:
14.7W
Papers: 12.0W
Citations: 165
U
University of Manchester
Scholars:
5.7W
Papers: 5.2W
Citations: 7.4W
researcher View more organizations