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首页> 外文期刊>The Astrophysical journal >THE IMPACT OF NEBULAR EMISSION ON THE BROADBAND FLUXES OF HIGH-REDSHIFT GALAXIES
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THE IMPACT OF NEBULAR EMISSION ON THE BROADBAND FLUXES OF HIGH-REDSHIFT GALAXIES

机译:星云发射对高红移星系的宽带通量的影响

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A substantial fraction of the light emitted from young or star-forming galaxies at ultraviolet to near-infrared wavelengths comes from the ionized interstellar medium in the form of emission lines and a nebular continuum. At high redshifts, star formation rates are on average higher and stellar populations younger than in the local universe. Both of these effects act to boost the impact of nebular emission on the overall spectrum of galaxies. Even so, the broadband fluxes and colors of high-redshift galaxies are routinely analyzed under the assumption that the light observed originates directly from stars. Here we assess the impact of nebular emission on broadband fluxes in Johnson/Cousins BVRIJHK, Sloan Digital Sky Survey grit and Spitzer IRAC/MIPS filters as a function of observed redshift (up to z = 15) for galaxies with different star formation histories. We find that nebular emission may account for a nonnegligible fraction of the light received from high-redshift galaxies. The ages and masses inferred for such objects through the use of spectral evolutionary models that omit the nebular contribution are therefore likely to contain systematic errors. We argue that a careful treatment of the nebular component will be essential for the interpretation of the rest-frame ultraviolet-to-infrared properties of the first galaxies formed, like the ones expected to be detected with the James Webb Space Telescope.
机译:从年轻星系或恒星系发出的紫外到近红外波长的光,很大一部分来自电离星际介质,呈发射线和星云状连续体的形式。在高红移条件下,恒星形成率平均要比本地宇宙高,而恒星族要年轻得多。这两种作用都增强了星云发射对星系整体光谱的影响。即使这样,在观察到的光直接来自恒星的假设下,常规分析高红移星系的宽带通量和颜色。在这里,我们针对不同恒星形成历史的星系,评估了星云发射对Johnson / Cousins BVRIJHK,Sloan Digital Sky Survey grit和Spitzer IRAC / MIPS滤镜中宽带通量的影响,作为观测到的红移的函数(最大z = 15)。我们发现星云发射可能占了从高红移星系接收到的光的不可忽略的一部分。因此,通过使用忽略星云贡献的光谱演化模型推断出此类物体的年龄和质量可能包含系统误差。我们认为,对星云成分的仔细处理对于解释第一个形成的星系的静止帧紫外线至红外特性至关重要,就像詹姆斯·韦伯太空望远镜所预期的那样。

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