论文标题

PAU调查:用窄带光度法测量4000Å光谱突破

The PAU Survey: Measurements of the 4000 Å spectral break with narrow-band photometry

论文作者

Renard, Pablo, Siudek, Małgorzata, Eriksen, Martin B., Cabayol, Laura, Cai, Zheng, Carretero, Jorge, Casas, Ricard, Castander, Francisco J., Fernandez, Enrique, García-Bellido, Juan, Gaztanaga, Enrique, Hoekstra, Henk, Joachimi, Benjamin, Miquel, Ramon, Navarro-Girones, David, Padilla, Cristóbal, Sanchez, Eusebio, Serrano, Santiago, Tallada-Crespí, Pau, De Vicente, Juan, Wittje, Anna, Wright, Angus H.

论文摘要

D4000光谱突破指数是可见光谱中最重要的特征之一,因为它是恒星年龄的代理,也用于银河系分类。但是,其直接测量始终保留给光谱法。在这里,我们提出了一种用窄带(NB)光度法直接测量D4000的通用方法;它已使用现实模拟进行了验证,然后用PAUS NB进行了评估,并与Vipers Spectra交叉匹配($ i _ {\ rm ab} <22.5 $,$ 0.562 <z <0.967 $)。我们还用SED拟合代码雪茄重建了D4000;使用PAUS NB而不是宽带可显着改善SED拟合结果。对于d4000 $ _ {\ rm n} $,直接测量具有$ \ rm \ langle snr \ rangle \ sim 4 $,但是我们发现,对于$ i _ {\ rm ab} <21 $所有直接的D4000测量值$ \ rm \ rm snr> 3 $。 Cigale d4000 $ _ {\ rm n} $具有$ \ rm \ langle snr \ rangle \ sim 20 $,但低估了该错误$> $ 50 \%。此外,直接方法可以很好地重现D4000-SFR关系,以及蓝色星系的D4000-MAS关系(对于红星系,选择效果会影响结果)。另一方面,CIGLE将星系准确地分为红色和蓝色种群。我们得出的结论是,用窄带光度法直接测量D4000是确定星系样品平均特性的有前途的工具,结果与光谱兼容。

The D4000 spectral break index is one of the most important features in the visible spectrum, as it is a proxy for stellar ages and is also used in galaxy classification. However, its direct measurement has always been reserved to spectroscopy. Here, we present a general method to directly measure the D4000 with narrow-band (NB) photometry; it has been validated using realistic simulations, and then evaluated with PAUS NBs, cross-matched with VIPERS spectra ($i_{\rm AB} < 22.5$, $0.562 < z < 0.967$). We also reconstruct the D4000 with the SED-fitting code CIGALE; the use of PAUS NBs instead of broad bands significantly improves the SED fitting results. For D4000$_{\rm n}$, the direct measurement has $\rm \langle SNR \rangle \sim 4$, but we find that for $i_{\rm AB}<21$ all direct D4000 measurements have $\rm SNR>3$. The CIGALE D4000$_{\rm n}$ has $\rm \langle SNR \rangle \sim 20$, but underestimates the error by $>$50\%. Furthermore, the direct method recreates well the D4000-SFR relation, as well as the D4000-mass relation for blue galaxies (for red galaxies, selection effects impact the results). On the other hand, CIGALE accurately classifies galaxies into red and blue populations. We conclude that the direct measurement of D4000 with narrow-band photometry is a promising tool to determine average properties of galaxy samples, with results compatible with spectroscopy.

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