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Optical-Infrared Spectral Energy Distributions of z 2 Lyman Break Galaxies* **

机译:z> 2莱曼断裂星系的光学红外光谱能量分布* **

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摘要

Broadband optical and IR spectral energy distributions are determined for spectroscopically confirmed z 2 Lyman break objects in the Hubble Deep Field (HDF). These photometric data are compared with spectral synthesis models which take into account the effects of metallicity and of internal reddening due to dust. It is found that, on average, Lyman break objects are shrouded in enough dust [typically E(B - V) ≈ 0.3] to suppress their UV fluxes by a factor of more than 10. The dust-corrected star formation rate in a typical HDF Lyman break object is ~60 h M⊙ yr-1 (q0 = 0.5). Furthermore, these objects are dominated by very young (0.2 Gyr, and a median of ~25 Myr) stellar populations, suggesting that star formation at high redshift is episodic rather than continuous. Typically, these star formation episodes produce ~109 h M⊙ of stars, or ~1/20 of the stellar mass of a present-day L* galaxy.
机译:确定哈勃深场(HDF)中经光谱确认的z> 2 Lyman破裂物体的宽带光学和IR光谱能量分布。将这些光度数据与光谱综合模型进行比较,该模型综合了金属性和灰尘引起的内部变红的影响。结果发现,平均来说,莱曼破裂物体被覆盖在足够多的尘埃中(通常为E(B-V)≈0.3),以将其紫外线通量抑制到10倍以上。 HDF莱曼断裂对象为〜60 hM⊙yr-1(q0 = 0.5)。此外,这些天体主要由非常年轻的星体(0.2 Gyr,中位数约为25 Myr)构成,这表明高红移下的恒星形成是偶发性的而不是连续的。通常,这些恒星形成事件产生约109 hM⊙的恒星,或当今L *星系恒星质量的约1/20。

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