首页> 外文期刊>The Astrophysical Journal. Supplement Series >GALEX-SDSS-WISE LEGACY CATALOG (GSWLC): STAR FORMATION RATES, STELLAR MASSES, AND DUST ATTENUATIONS OF 700,000 LOW-REDSHIFT GALAXIES
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GALEX-SDSS-WISE LEGACY CATALOG (GSWLC): STAR FORMATION RATES, STELLAR MASSES, AND DUST ATTENUATIONS OF 700,000 LOW-REDSHIFT GALAXIES

机译:GALEX-SDSS-WISE遗产目录(GSWLC):700,000个低红移星系的恒星形成率,恒星质量和尘埃衰减

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摘要

In this paper, we present the GALEX-SDSS-WISE Legacy Catalog (GSWLC), a catalog of physical properties (stellar masses, dust attenuations, and star formation rates [SFRs]) for similar to 700,000 galaxies with Sloan Digital Sky Survey (SDSS) redshifts below 0.3. GSWLC contains galaxies within the Galaxy Evolution Explorer footprint, regardless of a UV detection, covering 90% of SDSS. The physical properties were obtained from UV/optical spectral energy distribution (SED) fitting following Bayesian methodology of Salim et al., with improvements such as blending corrections for low-resolution UV photometry, flexible dust attenuation laws, and emission-line corrections. GSWLC also includes mid-IR SFRs derived from IR templates based on 22 mu m Wide-field Infrared Survey Explorer observations. These estimates are independent of UV/optical SED fitting, in order to separate possible systematics. The paper argues that the comparison of specific SFRs (sSFRs) is more informative and physically motivated than the comparison of SFRs. The sSFRs resulting from the UV/optical SED fitting are compared to the mid-IR sSFRs and to sSFRs from three published catalogs. For "main-sequence" galaxies with no active galactic nucleus (AGN) all sSFRs are in very good agreement (within 0.1 dex on average). In particular, the widely used aperture-corrected SFRs from the MPA/JHU catalog show no systematic offsets, in contrast to some integral field spectroscopy results. For galaxies below the main sequence (log sSFR <-11), mid-IR (s)SFRs based on fixed luminosity-SFR conversion are severely biased (up to 2 dex) because the dust is primarily heated by old stars. Furthermore, mid-IR (s)SFRs are overestimated by up to 0.6 dex for galaxies with AGNs, presumably due to nonstellar dust heating. UV/optical (s)SFRs are thus preferred to IR-based (s)SFRs for quenched galaxies and those that host AGNs.
机译:在本文中,我们通过斯隆数字天空调查(SDSS)提出了类似于700,000个星系的GALEX-SDSS-WISE旧版目录(GSWLC),该目录是物理性质(星体质量,尘埃衰减和恒星形成率[SFR])的目录)红移到0.3以下。无论是否进行紫外线检测,GSWLC都在Galaxy Evolution Explorer足迹内包含星系,覆盖了90%的SDSS。物理特性是根据Salim等人的贝叶斯方法从UV /光谱能量分布(SED)拟合获得的,并进行了改进,例如针对低分辨率UV光度法的混合校正,灵活的粉尘衰减定律和发射线校正。 GSWLC还包括基于22微米广域红外Survey Explorer观测值的红外模板衍生的中红外SFR。这些估计数与UV /光学SED拟合无关,以便将可能的系统分开。该论文认为,与SFR的比较相比,特定SFR的比较具有更多的信息性和生理动机。将紫外/光学SED配件产生的sSFR与中红外sSFR以及来自三个已出版目录的sSFR进行比较。对于没有活动银河核(AGN)的“主序列”星系,所有sSFR的一致性非常好(平均0.1 dex以内)。特别是,与某些积分场光谱分析结果相比,MPA / JHU目录中广泛使用的孔径校正SFR没有显示出系统性偏移。对于主序列以下的星系(log sSFR <-11),基于固定光度-SFR转换的中红外(s)SFR严重偏向(最高2 dex),因为尘埃主要是由旧恒星加热的。此外,对于带有AGN的星系,中红外(s)SFRs高估了0.6 dex,这可能是由于非星尘加热所致。因此,对于淬灭星系和承载AGN的星系,UV /光学SFR优于基于IR的SFR。

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