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首页> 外文期刊>The Astrophysical journal >IRS SPECTRA OF TWO ULTRALUMINOUS INFRARED GALAXIES AT z = 1.3
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IRS SPECTRA OF TWO ULTRALUMINOUS INFRARED GALAXIES AT z = 1.3

机译:z = 1.3时的两个超红外星系的IRS光谱

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We present low-resolution (64 < R < 124) mid-infrared (8-38 μm) spectra of two z ≈ 1.3 ultraluminous infrared galaxies (ULIRGs) with L_(8-1000 μm) ≈ 10~(13) solar luminosity. The spectra were taken with the Infrared Spectrograph (IRS) on board the Spitzer Space Telescope. Both objects were discovered in the NOAO Deep Wide-Field Survey (NDWFS) Bootes field. MIPS J142824.0+3 52619 is a bright 160 μm source with a large infrared-to-optical flux density ratio. Previous authors provided evidence for a foreground lens and estimated an amplification of approx< 10, although this factor is currently poorly constrained. The 6.2,7.7,11.3, and 12.8 μm polycyclic aromatic hydrocarbon (PAH) emission bands in its IRS spectrum indicate a redshift of z ≈ 1.3. The large equivalent width of the 6.2 μm PAH feature indicates that at least 50% of the mid-infrared energy is generated in a starburst, an interpretation supported by a large [Ne II]/[Ne III] ratio and a low upper limit on the X-ray luminosity. SST24 J142827.19+354127.71 has the brightest 24 μm flux (10.55 mJy) among optically faint (R > 20) galaxies in the NDWFS. Its mid-infrared spectrum lacks emission features, but the broad 9.7 μm silicate absorption band places this source at z ≈ 1.3. Optical spectroscopy confirms a redshift of z = 1.293 ± 0.001. Given this redshift, SST24 J142827.19+354127.71 has among the largest rest-frame 5 μm luminosities known. The similarity of its SED to those of known AGN-dominated ULIRGs and its lack of either PAH features or large amounts of cool dust indicate that the mid-infrared emission is dominated by an AGN rather than a starburst.
机译:我们提出了两个具有L_(8-1000μm)≈10〜(13)太阳光度的z≈1.3超发光红外星系(ULIRG)的低分辨率(64 20)星系中,SST24 J142827.19 + 354127.71具有最亮的24μm通量(10.55 mJy)。它的中红外光谱缺乏发射特性,但是9.7μm的宽硅酸盐吸收带将该光源置于z≈1.3。光谱学证实了z = 1.293±0.001的红移。鉴于这种红移,SST24 J142827.19 + 354127.71具有已知的最大静止框架5μm发光度。它的SED与已知的以AGN为主的ULIRG相似,并且缺少PAH特性或大量的冷尘,这表明中红外辐射主要由AGN而非星爆控制。

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