Euclid preparation XVII. Cosmic Dawn Survey: Spitzer Space Telescope observations of the Euclid deep fields and calibration fields

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Euclid preparation XVII. Cosmic Dawn Survey : Spitzer Space Telescope observations of the Euclid deep fields and calibration fields. / Moneti, A.; Mccracken, H. J.; Shuntov, M.; Kauffmann, O. B.; Capak, P.; Davidzon, I.; Ilbert, O.; Scarlata, C.; Toft, S.; Weaver, J.; Chary, R.; Cuby, J.; Faisst, A. L.; Masters, D. C.; Mcpartland, C.; Mobasher, B.; Sanders, D. B.; Scaramella, R.; Zalesky, L.; Bodendorf, C.; Branchini, E.; Brau-Nogue, S.; Brescia, M.; Brinchmann, J.; Capobianco, V.; Carbone, C.; Carretero, J.; Castander, F. J.; Castellano, M.; Cavuoti, S.; Euclid Collaboration.

I: Astronomy and Astrophysics, Bind 658, A126, 10.02.2022.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Moneti, A, Mccracken, HJ, Shuntov, M, Kauffmann, OB, Capak, P, Davidzon, I, Ilbert, O, Scarlata, C, Toft, S, Weaver, J, Chary, R, Cuby, J, Faisst, AL, Masters, DC, Mcpartland, C, Mobasher, B, Sanders, DB, Scaramella, R, Zalesky, L, Bodendorf, C, Branchini, E, Brau-Nogue, S, Brescia, M, Brinchmann, J, Capobianco, V, Carbone, C, Carretero, J, Castander, FJ, Castellano, M, Cavuoti, S & Euclid Collaboration 2022, 'Euclid preparation XVII. Cosmic Dawn Survey: Spitzer Space Telescope observations of the Euclid deep fields and calibration fields', Astronomy and Astrophysics, bind 658, A126. https://doi.org/10.1051/0004-6361/202142361

APA

Moneti, A., Mccracken, H. J., Shuntov, M., Kauffmann, O. B., Capak, P., Davidzon, I., Ilbert, O., Scarlata, C., Toft, S., Weaver, J., Chary, R., Cuby, J., Faisst, A. L., Masters, D. C., Mcpartland, C., Mobasher, B., Sanders, D. B., Scaramella, R., Zalesky, L., ... Euclid Collaboration (2022). Euclid preparation XVII. Cosmic Dawn Survey: Spitzer Space Telescope observations of the Euclid deep fields and calibration fields. Astronomy and Astrophysics, 658, [A126]. https://doi.org/10.1051/0004-6361/202142361

Vancouver

Moneti A, Mccracken HJ, Shuntov M, Kauffmann OB, Capak P, Davidzon I o.a. Euclid preparation XVII. Cosmic Dawn Survey: Spitzer Space Telescope observations of the Euclid deep fields and calibration fields. Astronomy and Astrophysics. 2022 feb. 10;658. A126. https://doi.org/10.1051/0004-6361/202142361

Author

Moneti, A. ; Mccracken, H. J. ; Shuntov, M. ; Kauffmann, O. B. ; Capak, P. ; Davidzon, I. ; Ilbert, O. ; Scarlata, C. ; Toft, S. ; Weaver, J. ; Chary, R. ; Cuby, J. ; Faisst, A. L. ; Masters, D. C. ; Mcpartland, C. ; Mobasher, B. ; Sanders, D. B. ; Scaramella, R. ; Zalesky, L. ; Bodendorf, C. ; Branchini, E. ; Brau-Nogue, S. ; Brescia, M. ; Brinchmann, J. ; Capobianco, V. ; Carbone, C. ; Carretero, J. ; Castander, F. J. ; Castellano, M. ; Cavuoti, S. ; Euclid Collaboration. / Euclid preparation XVII. Cosmic Dawn Survey : Spitzer Space Telescope observations of the Euclid deep fields and calibration fields. I: Astronomy and Astrophysics. 2022 ; Bind 658.

Bibtex

@article{aeff7376a114465bb10a061ccaa19bb6,
title = "Euclid preparation XVII. Cosmic Dawn Survey: Spitzer Space Telescope observations of the Euclid deep fields and calibration fields",
abstract = "We present a new infrared survey covering the three Euclid deep fields and four other Euclid calibration fields using Spitzer Space Telescope's Infrared Array Camera (IRAC). We combined these new observations with all relevant IRAC archival data of these fields in order to produce the deepest possible mosaics of these regions. In total, these observations represent nearly 11 % of the total Spitzer Space Telescope mission time. The resulting mosaics cover a total of approximately 71.5 deg2 in the 3.6 and 4.5 μm bands, and approximately 21.8 deg2 in the 5.8 and 8 μm bands. They reach at least 24 AB magnitude (measured to 5σ, in a 2″​​.5 aperture) in the 3.6 μm band and up to ∼5 mag deeper in the deepest regions. The astrometry is tied to the Gaia astrometric reference system, and the typical astrometric uncertainty for sources with 16 {"}< {"}[3.6]< 19 is ≲ 0″​​.15. The photometric calibration is in excellent agreement with previous WISE measurements. We extracted source number counts from the 3.6 μm band mosaics, and they are in excellent agreement with previous measurements. Given that the Spitzer Space Telescope has now been decommissioned, these mosaics are likely to be the definitive reduction of these IRAC data. This survey therefore represents an essential first step in assembling multi-wavelength data on the Euclid deep fields, which are set to become some of the premier fields for extragalactic astronomy in the 2020s. ",
keywords = "Cosmology: observations, Dark energy, Dark matter, Galaxy: formation, Large-scale structure of Universe, Surveys",
author = "A. Moneti and Mccracken, {H. J.} and M. Shuntov and Kauffmann, {O. B.} and P. Capak and I. Davidzon and O. Ilbert and C. Scarlata and S. Toft and J. Weaver and R. Chary and J. Cuby and Faisst, {A. L.} and Masters, {D. C.} and C. Mcpartland and B. Mobasher and Sanders, {D. B.} and R. Scaramella and L. Zalesky and C. Bodendorf and E. Branchini and S. Brau-Nogue and M. Brescia and J. Brinchmann and V. Capobianco and C. Carbone and J. Carretero and Castander, {F. J.} and M. Castellano and S. Cavuoti and {Euclid Collaboration}",
note = "Publisher Copyright: {\textcopyright} Euclid Collaboration 2022.",
year = "2022",
month = feb,
day = "10",
doi = "10.1051/0004-6361/202142361",
language = "English",
volume = "658",
journal = "Astronomy & Astrophysics",
issn = "0004-6361",
publisher = "E D P Sciences",

}

RIS

TY - JOUR

T1 - Euclid preparation XVII. Cosmic Dawn Survey

T2 - Spitzer Space Telescope observations of the Euclid deep fields and calibration fields

AU - Moneti, A.

AU - Mccracken, H. J.

AU - Shuntov, M.

AU - Kauffmann, O. B.

AU - Capak, P.

AU - Davidzon, I.

AU - Ilbert, O.

AU - Scarlata, C.

AU - Toft, S.

AU - Weaver, J.

AU - Chary, R.

AU - Cuby, J.

AU - Faisst, A. L.

AU - Masters, D. C.

AU - Mcpartland, C.

AU - Mobasher, B.

AU - Sanders, D. B.

AU - Scaramella, R.

AU - Zalesky, L.

AU - Bodendorf, C.

AU - Branchini, E.

AU - Brau-Nogue, S.

AU - Brescia, M.

AU - Brinchmann, J.

AU - Capobianco, V.

AU - Carbone, C.

AU - Carretero, J.

AU - Castander, F. J.

AU - Castellano, M.

AU - Cavuoti, S.

AU - Euclid Collaboration

N1 - Publisher Copyright: © Euclid Collaboration 2022.

PY - 2022/2/10

Y1 - 2022/2/10

N2 - We present a new infrared survey covering the three Euclid deep fields and four other Euclid calibration fields using Spitzer Space Telescope's Infrared Array Camera (IRAC). We combined these new observations with all relevant IRAC archival data of these fields in order to produce the deepest possible mosaics of these regions. In total, these observations represent nearly 11 % of the total Spitzer Space Telescope mission time. The resulting mosaics cover a total of approximately 71.5 deg2 in the 3.6 and 4.5 μm bands, and approximately 21.8 deg2 in the 5.8 and 8 μm bands. They reach at least 24 AB magnitude (measured to 5σ, in a 2″​​.5 aperture) in the 3.6 μm band and up to ∼5 mag deeper in the deepest regions. The astrometry is tied to the Gaia astrometric reference system, and the typical astrometric uncertainty for sources with 16 "< "[3.6]< 19 is ≲ 0″​​.15. The photometric calibration is in excellent agreement with previous WISE measurements. We extracted source number counts from the 3.6 μm band mosaics, and they are in excellent agreement with previous measurements. Given that the Spitzer Space Telescope has now been decommissioned, these mosaics are likely to be the definitive reduction of these IRAC data. This survey therefore represents an essential first step in assembling multi-wavelength data on the Euclid deep fields, which are set to become some of the premier fields for extragalactic astronomy in the 2020s.

AB - We present a new infrared survey covering the three Euclid deep fields and four other Euclid calibration fields using Spitzer Space Telescope's Infrared Array Camera (IRAC). We combined these new observations with all relevant IRAC archival data of these fields in order to produce the deepest possible mosaics of these regions. In total, these observations represent nearly 11 % of the total Spitzer Space Telescope mission time. The resulting mosaics cover a total of approximately 71.5 deg2 in the 3.6 and 4.5 μm bands, and approximately 21.8 deg2 in the 5.8 and 8 μm bands. They reach at least 24 AB magnitude (measured to 5σ, in a 2″​​.5 aperture) in the 3.6 μm band and up to ∼5 mag deeper in the deepest regions. The astrometry is tied to the Gaia astrometric reference system, and the typical astrometric uncertainty for sources with 16 "< "[3.6]< 19 is ≲ 0″​​.15. The photometric calibration is in excellent agreement with previous WISE measurements. We extracted source number counts from the 3.6 μm band mosaics, and they are in excellent agreement with previous measurements. Given that the Spitzer Space Telescope has now been decommissioned, these mosaics are likely to be the definitive reduction of these IRAC data. This survey therefore represents an essential first step in assembling multi-wavelength data on the Euclid deep fields, which are set to become some of the premier fields for extragalactic astronomy in the 2020s.

KW - Cosmology: observations

KW - Dark energy

KW - Dark matter

KW - Galaxy: formation

KW - Large-scale structure of Universe

KW - Surveys

U2 - 10.1051/0004-6361/202142361

DO - 10.1051/0004-6361/202142361

M3 - Journal article

AN - SCOPUS:85124800601

VL - 658

JO - Astronomy & Astrophysics

JF - Astronomy & Astrophysics

SN - 0004-6361

M1 - A126

ER -

ID: 307081519