1
Return

TIME Commissioning Observations. I. Mapping Dust and Molecular Gas in the Sgr A Molecular Cloud Complex at the Galactic Center

delete2026-05-20
delete0
PRE
AI
Y
Yang, Selina F. *
M
McAtee, Sophie M.
B
Benjamin J. Vaughan
A
A. T. Crites
V
Victoria Butler
D
Dongwoo T. Chung
R
Ryan P. Keenan
D
Dang Pham
P
Prakash, Shwetha
B
Bock, James J.
C
Charles M. Bradford
T
Tzu‐Ching Chang
Y
Yun-Ting Cheng
D
Dunn, Audrey
E
Emerson, Nicholas
F
Frez, Clifford
J
Jonathon Hunacek
C
Chao-Te Li
L
Lowe, Ian N.
K
K. Lau
D
Daniel P. Marrone
E
Evan C. Mayer
G
Guochao Sun
T
Trumper, Isaac
T
Turner, Anthony D.
W
Wei, Ta-Shun
M
M. Zemcov
DOI:10.3847/1538-4357/ae606cdelete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
We present the processing of an observation of Sagittarius A (Sgr A) with the Tomographic Ionized-carbon Mapping Experiment (TIME), part of the 2021-2022 commissioning run, to verify TIME's hyperspectral imaging capabilities for future line-intensity mapping. Using an observation of Jupiter to calibrate detector gains and pointing offsets, we process the Sgr A observation in a purpose-built pipeline that removes correlated noise through common-mode subtraction with correlation-weighted scaling, and uses map-domain principal component analysis to identify further systematic errors. The resulting frequency-resolved maps recover strong 12CO(2-1) and 13CO(2-1) emission, and a continuum component whose spectral index discriminates free-free emission in the circumnuclear disk versus thermal dust emission in the 20 and 50 km s-1 molecular clouds. Broadband continuum flux comparisons with the Bolocam Galactic Plane Survey show agreement to within similar to 5% in high signal-to-noise ratio molecular clouds in the Sgr A region. From the CO line detections, we estimate a molecular hydrogen mass of between 5.4 & times; 105M circle dot and 5.7 & times; 105M circle dot, consistent with prior studies. These results demonstrate TIME's ability to recover both continuum and spectral-line signals in complex Galactic fields, validating its readiness for upcoming extragalactic CO and [C ii] surveys.
Keywords:
COLOGNE DATABASE
CARBON-MONOXIDE
DATA RELEASE
ASTROPY
SPECTROSCOPY
SAGITTARIUS
PACKAGE
PROJECT
GALAXY

Journal

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

Organization

University of Colorado System cover
University of Colorado System
Scholars:
6.2W
Papers: 5.5W
Citations: 1.8K
R
Rochester Institute of Technology
Scholars:
3.7K
Papers: 3.2K
Citations: 45
M
max planck society
Scholars:
2.1K
Papers: 949
Citations: 3
N
nasa jet propulsion laboratory (jpl)
Scholars:
6.8K
Papers: 5.3K
Citations: 14
U
university of colorado boulder
Scholars:
1.9W
Papers: 1.5W
Citations: 33
C
california institute of technology
Scholars:
2.4K
Papers: 999
Citations: 0
  cornell university
Scholars:
2.3K
Papers: 958
Citations: 0
U
university of toronto
Scholars:
14.5W
Papers: 11.9W
Citations: 165
Cited Papers

Cited Papers

Citing Papers

Citing Papers