On unveiling buried nuclei with JWST: A technique for hunting the most obscured galaxy nuclei from local to high redshift

IF 5.4 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
I. García-Bernete, F. R. Donnan, D. Rigopoulou, M. Pereira-Santaella, E. González-Alfonso, N. Thatte, S. Aalto, S. König, M. Maksymowicz-Maciata, M. W. R. Smith, J.-S. Huang, G. E. Magdis, P. F. Roche, J. Devriendt, A. Slyz
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引用次数: 0

Abstract

We analyze JWST NIRSpec+MIRI/MRS observations of the infrared (IR) polycyclic aromatic hydrocarbon (PAH) features in the central regions (∼0.26″ at 6 μm; ∼50–440 pc depending on the source) of local luminous IR galaxies. In this work, we examine the effect of nuclear obscuration on the PAH features of deeply obscured nuclei, predominantly found in local luminous IR galaxies, and we compare these nuclei with “normal” star-forming regions. We extend previous work to include shorter wavelength PAH ratios now available with the NIRSpec+MIRI/MRS spectral range. We introduce a new diagnostic diagram for selecting deeply obscured nuclei based on the 3.3 and 6.2 μm PAH features and/or mid-IR continuum ratios at ∼3 and 5 μm. We find that the PAH equivalent width ratio of the brightest PAH features at shorter wavelengths (at 3.3 and 6.2 μm) is impacted by nuclear obscuration. Although the sample of luminous IR galaxies used in this analysis is relatively small, we find that sources exhibiting a high silicate absorption feature cluster tightly in a specific region of the diagram, whereas star-forming regions experiencing lower extinction levels occupy a different area in the diagram. This demonstrates the potential of this technique to identify buried nuclei. To leverage the excellent sensitivity of the MIRI imager on board JWST, we extend our method of identifying deeply obscured nuclei at higher redshifts using a selection of MIRI filters. Specifically, the combination of various MIRI JWST filters enables the identification of buried sources beyond the local Universe and up to z ∼ 3, where other commonly used obscuration tracers such as the 9.7 μm silicate band, are out of the spectral range of MRS. Our results pave the way for identifying distant deeply obscured nuclei with JWST.
用 JWST 揭开被掩埋的星系核的面纱:一种猎取从本地到高红移最模糊星系核的技术
我们分析了JWST NIRSpec+MIRI/MRS观测到的中部区域的红外(IR)多环芳烃(PAH)特征(~ 0.26″at 6 μm;(约50 - 440pc,取决于来源)。在这项工作中,我们研究了核遮挡对深度遮挡核的多环芳烃特征的影响,这些核主要存在于局部发光的红外星系中,我们将这些核与“正常”的恒星形成区进行了比较。我们扩展了以前的工作,包括更短的波长多环芳烃比,现在可以使用NIRSpec+MIRI/MRS光谱范围。我们基于3.3和6.2 μm多环芳烃特征和/或在~ 3和5 μm处的中红外连续谱比,引入了一种新的诊断图,用于选择深度模糊的核。我们发现在较短波长(3.3 μm和6.2 μm)最亮的多环芳烃特征的等效宽度比受到核遮挡的影响。虽然本分析中使用的发光红外星系样本相对较小,但我们发现,表现出高硅酸盐吸收特征的源紧密地聚集在图中的特定区域,而经历较低消光水平的恒星形成区域占据了图中的不同区域。这证明了该技术在识别埋藏核方面的潜力。为了利用JWST上的MIRI成像仪的出色灵敏度,我们扩展了我们的方法,使用选择的MIRI滤波器在更高的红移下识别深度模糊的核。具体来说,各种MIRI JWST滤波器的组合能够识别超出本地宇宙和高达z ~ 3的隐藏源,其中其他常用的遮挡示踪剂(如9.7 μm硅酸盐波段)超出了mrs的光谱范围。我们的研究结果为用JWST识别遥远的深度遮挡核铺平了道路。
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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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