论文标题

部分可观测时空混沌系统的无模型预测

PAH emission from star-forming galaxies in JWST mid-infrared imaging of the lensing cluster SMACS J0723.3$-$7327

论文作者

Langeroodi, Danial, Hjorth, Jens

论文摘要

星形星系(SFG)的中红外光谱的特征是特征性的宽PAH发射特征,为3-20 $μ$ m。由于这些特征是红移的,因此预计它们会在特定的中红外波长下占主导地位,从而导致宽带光度计的大量红移颜色变化。 JWST的出现首次允许对正常SFG进行此效果。基于光谱能量分布模板,我们在这里以中红外(4.4、7.7、10、15和18 $μm)的颜色颜色图介绍了描述SFG颜色红移依赖性的颜色图。此外,我们通过使用宇宙恒星形成史和恒星形成速率函数来填充这些轨道来介绍模拟的颜色图。根据红移的不同,我们发现SFG在颜色图中脱颖而出,几个幅度。我们为在JWST的早期发布观察结果中检测到的星系的首次观察证明了这种效果,朝向镜头集群SMACS J0723.3 $ - $ 7327。虽然检测到的星系的分布与模拟一致,但镜头效应会大大提高这些数字。在所有频段中检测到的具有最高光谱红移的PAH发射极是$ z = 1.45 $的多个图像的星系。还有大量的群集成员,这些成员没有表现出PAH排放,除了$ z = 0.38 $的一个SFG。未来的宽场观测将进一步填充中红外颜色图,并洞悉典型SFG的演变。

The mid-infrared spectra of star-forming galaxies (SFGs) are characterized by characteristic broad PAH emission features at 3-20 $μ$m. As these features are redshifted, they are predicted to dominate the flux at specific mid-infrared wavelengths, leading to substantial redshift-dependent color variations in broad-band photometry. The advent of JWST for the first time allows the study of this effect for normal SFGs. Based on spectral energy distribution templates, we here present tracks in mid-infrared (4.4, 7.7, 10, 15, and 18 $μ$m) color-color diagrams describing the redshift dependence of SFG colors. In addition, we present simulated color-color diagrams by populating these tracks using the cosmic star-formation history and the star-formation rate function. Depending on redshift, we find that SFGs stand out in the color-color diagrams by several magnitudes. We provide the first observational demonstration of this effect for galaxies detected in the JWST Early Release Observations of the field towards the lensing cluster SMACS J0723.3$-$7327. While the distribution of detected galaxies is consistent with the simulations, the numbers are substantially boosted by lensing effects. The PAH emitter with the highest spectroscopic redshift, detected in all bands, is a multiply-imaged galaxy at $z=1.45$. There is also a substantial number of cluster members, which do not exhibit PAH emission, except for one SFG at $z=0.38$. Future wider-field observations will further populate mid-infrared color-color diagrams and provide insight into the evolution of typical SFGs.

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