首页> 外文期刊>The Astrophysical journal >EVIDENCE FOR WIDE-SPREAD ACTIVE GALACTIC NUCLEUS-DRIVEN OUTFLOWS IN THE MOST MASSIVE z ~ 1-2 STAR-FORMING GALAXIES*
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EVIDENCE FOR WIDE-SPREAD ACTIVE GALACTIC NUCLEUS-DRIVEN OUTFLOWS IN THE MOST MASSIVE z ~ 1-2 STAR-FORMING GALAXIES*

机译:在大多数z〜1-2星状星系中广泛传播主动银河系核驱动的流出的证据*

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摘要

In this paper, we follow up on our previous detection of nuclear ionized outflows in the most massive (log(M */M ☉) ≥ 10.9) z ~ 1-3 star-forming galaxies by increasing the sample size by a factor of six (to 44 galaxies above log(M */M ☉) ≥ 10.9) from a combination of the SINS/zC-SINF, LUCI, GNIRS, and KMOS3Dspectroscopic surveys. We find a fairly sharp onset of the incidence of broad nuclear emission (FWHM in the Hα, [N II], and [S II] lines ~450-5300 km s–1), with large [N II]/Hα ratios, above log(M */M ☉) ~ 10.9, with about two-thirds of the galaxies in this mass range exhibiting this component. Broad nuclear components near and above the Schechter mass are similarly prevalent above and below the main sequence of star-forming galaxies, and at z ~ 1 and ~2. The line ratios of the nuclear component are fit by excitation from active galactic nuclei (AGNs), or by a combination of shocks and photoionization. The incidence of the most massive galaxies with broad nuclear components is at least as large as that of AGNs identified by X-ray, optical, infrared, or radio indicators. The mass loading of the nuclear outflows is near unity. Our findings provide compelling evidence for powerful, high-duty cycle, AGN-driven outflows near the Schechter mass, and acting across the peak of cosmic galaxy formation.
机译:在本文中,我们通过将样本大小增加六倍来跟踪先前在最大质量(log(M * / M☉)≥10.9)z〜1-3个恒星形成星系中检测到的核离子流出。 SINS / zC-SINF,LUCI,GNIRS和KMOS3D光谱调查的组合(对数大于log(M * / M☉)≥10.9的44个星系)。我们发现宽核发射(HW,[N II]和[S II]线〜450-5300 km s-1中的FWHM)发生率相当高,[N II] /Hα比率大,高于log(M * / M☉)〜10.9,在这个质量范围内,约有三分之二的星系显示出该分量。在Schechter质量附近和上方的宽核成分在形成恒星的星系的主要序列的上方和下方相似,并且在z〜1和〜2处普遍存在。核组分的线比可以通过活跃的银河系原子核(AGN)激发或通过电击和电离的组合来拟合。具有广泛核成分的最大质量星系的发生率至少与X射线,光学,红外或放射性指示剂识别出的AGN的发生率一样大。核流出的质量负荷接近统一。我们的发现提供了令人信服的证据,证明了Schechter物质附近强大,高占空比,由AGN驱动的流出,并作用于宇宙星系形成的峰值。
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