Spectroscopic confirmation of a dust-obscured, possibly metal-rich dwarf galaxy at z ∼ 5

IF 5.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Astronomy & Astrophysics Pub Date : 2025-01-24 DOI:10.1051/0004-6361/202452604
L. Bisigello, G. Gandolfi, A. Feltre, P. Arrabal Haro, A. Calabrò, N. J. Cleri, L. Costantin, G. Girardi, M. Giulietti, A. Grazian, C. Gruppioni, N. P. Hathi, B. W. Holwerda, M. Llerena, R. A. Lucas, F. Pacucci, I. Prandoni, G. Rodighiero, L.-M. Seillé, S. M. Wilkins, M. Bagley, M. Dickinson, S. L. Finkelstein, J. Kartaltepe, A. M. Koekemoer, C. Papovich, N. Pirzkal
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Abstract

We present the first spectroscopic confirmation of a dust-obscured dwarf galaxy, CEERS-14821. The analysis was performed by combining JWST NIRCam broadband photometry and NIRSpec/PRISM spectroscopic data. From the detection of multiple rest-frame optical lines, we derive that CEERS-14821 is located at z = 4.883 ± 0.003. Moreover, from a secure detection of the Hα and Hβ, we derive that the galaxy has a dust extinction ranging from to , depending on the assumed reddening law. This value is extremely large given that we estimated a low stellar mass, that is, or , based on two different dust extinction laws. Moreover, the combination of different metallicity tracers and the spectro-photometric fit suggests that the galaxy may also be metal-rich, with 12 + log10(O/H)> 8.3, but a low metallicity value cannot be totally ruled out. The high metallicity value would be above the expectation based on the mass-metallicity relation. Both metallicity estimations are above the expectations based on the fundamental mass-metallicity relation since CEERS-14821 is going through a burst of star formation. The constraints on a possible active galactic nucleus presence are limited and loose, but they point towards a possible non-dominant contribution (fAGN < 0.5 with respect to the total dust luminosity). Based on the rest-frame optical images, this source has a size compatible with galaxies of similar stellar masses and at similar redshifts. Finally, CEERS-14821 may be part of a larger galaxy overdensity, but there are no other galaxies closely interacting with it (within 30 Mpc).
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光谱确认在z ~ 5被尘埃遮蔽,可能富含金属的矮星系
我们提出了第一个尘埃遮蔽矮星系的光谱确认,CEERS-14821。结合JWST NIRCam宽带测光和NIRSpec/PRISM光谱数据进行分析。通过对多个静帧光线的检测,我们得出CEERS-14821位于z = 4.883±0.003。此外,通过对Hα和Hβ的安全检测,我们得出该星系的尘埃消光范围从到,这取决于假设的变红定律。考虑到我们估计的恒星质量很低,或者说,基于两种不同的尘埃消退规律,这个值是非常大的。此外,结合不同的金属丰度示踪剂和光谱光度拟合表明,该星系也可能富含金属,其金属丰度为12 + log10(O/H)> 8.3,但不能完全排除低金属丰度值的可能性。根据质量-金属丰度关系,高金属丰度值将超出预期。由于CEERS-14821正在经历恒星形成的爆发,这两个金属丰度估计都高于基于基本质量-金属丰度关系的预期。对可能存在的活动星系核的限制是有限和松散的,但它们指向了可能的非显性贡献(相对于尘埃总光度的fAGN < 0.5)。根据静止帧光学图像,这个源的大小与具有相似恒星质量和相似红移的星系兼容。最后,CEERS-14821可能是一个更大的星系密度过大的一部分,但没有其他星系与它密切相互作用(在30 Mpc范围内)。
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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