NOEMA observations of GN-z11: Constraining Neutral Interstellar Medium and Dust Formation in the Heart of Cosmic Reionization at $z=10.6$
Y. Fudamoto, P. A. Oesch, F. Walter, R. Decarli, C. L. Carilli, A., Ferrara, L. Barrufet, R. Bouwens, M. Dessauges-Zavadsky, E. J. Nelson, H., Dannerbauer, G. Illingworth, A. K. Inoue, R. Marques-Chaves, I., P\'erez-Fournon, D. A. Riechers, D. Schaerer, R. Smit, Y. Sugahara

TL;DR
This study uses NOEMA to observe a high-redshift galaxy GN-z11, setting upper limits on its dust and [CII] emission, and highlights the need for deeper observations to understand dust formation during cosmic reionization.
Contribution
First deep millimeter observations of GN-z11 providing constraints on its dust and gas content at z=10.6, emphasizing the importance of sensitive measurements for early universe studies.
Findings
No detection of dust continuum or [CII] emission in GN-z11.
Upper limits on dust mass and molecular gas mass.
Deeper observations are necessary to study dust production at high redshift.
Abstract
We present results of dust continuum and [CII] emission line observations of a remarkably UV-luminous () galaxy at : GN-z11. Using the Northern Extended Millimeter Array (NOEMA), observations have been carried out over multiple observing cycles. We achieved a high sensitivity resulting in a continuum depth of and a [CII] emission line sensitivity of using binning with a synthesized beam. Neither dust continuum nor [CII] line emission are detected at the expected frequency of and the sky location of GN-z11. The upper limits show that GN-z11 is neither luminous in nor , with a dust mass limit of…
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Taxonomy
TopicsSpectroscopy and Laser Applications · Superconducting and THz Device Technology · Astrophysics and Star Formation Studies
