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首页> 外文期刊>The Astrophysical journal >MEASUREMENTS OF CO REDSHIFTS WITH Z-SPEC FOR LENSED SUBMILLIMETER GALAXIES DISCOVERED IN THE H-ATLAS SURVEY
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MEASUREMENTS OF CO REDSHIFTS WITH Z-SPEC FOR LENSED SUBMILLIMETER GALAXIES DISCOVERED IN THE H-ATLAS SURVEY

机译:H-atlas调查中发现的超视变星系星系Z-SPEC的CO折算测量

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摘要

We present new observations from Z-Spec, a broadband 185-305?GHz spectrometer, of five submillimeter bright lensed sources selected from the Herschel-Astrophysical Terahertz Large Area Survey science demonstration phase catalog. We construct a redshift-finding algorithm using combinations of the signal to noise of all the lines falling in the Z-Spec bandpass to determine redshifts with high confidence, even in cases where the signal to noise in individual lines is low. We measure the dust continuum in all sources and secure CO redshifts for four out of five (z ~ 1.5-3). In one source, SDP.17, we tentatively identify two independent redshifts and a water line, confirmed at z = 2.308. Our sources have properties characteristic of dusty starburst galaxies, with magnification-corrected star formation rates of 102 – 3 M ☉ yr–1. Lower limits for the dust masses (~ a few 108 M ☉) and spatial extents (~1?kpc equivalent radius) are derived from the continuum spectral energy distributions, corresponding to dust temperatures between 54 and 69?K. In the local thermodynamic equilibrium (LTE) approximation, we derive relatively low CO excitation temperatures ( 100 K) and optical depths (τ 1). Performing a non-LTE excitation analysis using RADEX, we find that the CO lines measured by Z-Spec (from J = 4 → 3 to 10 → 9, depending on the galaxy) localize the best solutions to either a high-temperature/low-density region or a low/temperature/high-density region near the LTE solution, with the optical depth varying accordingly. Observations of additional CO lines, CO(1-0) in particular, are needed to constrain the non-LTE models.
机译:我们将从Z-Spec(宽带185-305?GHz光谱仪)中,从Herschel-Astrophysical Terahertz大面积调查科学示范阶段目录中选择的五个亚毫米明亮透镜源中提出新的观测结果。我们使用落在Z-Spec带通中的所有线路的信噪比组合来构造红移查找算法,即使在个别线路中的信噪比较低的情况下,也可以高置信度确定红移。我们测量所有来源的粉尘连续体,并确保五分之四的CO红移(z〜1.5-3)。在一个数据源SDP.17中,我们临时确定了两个独立的红移和一条水线,确认为​​z = 2.308。我们的资料来源具有尘埃爆炸形星系的特性,经倍率校正后的恒星形成率为102 – 3 M☉yr–1。尘埃质量的下限(约108 M☉)和空间范围的下限(等效半径约1kkpc)是根据连续光谱能量分布得出的,对应于54至69?K的粉尘温度。在局部热力学平衡(LTE)近似中,我们得出相对较低的CO激发温度(100 K)和光学深度(τ1)。使用RADEX执行非LTE激励分析,我们发现Z-Spec测量的CO线(从J = 4→3到10→9,具体取决于星系)将最佳解决方案定位于高温/低温LTE解决方案附近的高密度区域或低/温度/高密度区域,光学深度会相应变化。需要观察额外的CO线路,尤其是CO(1-0),以约束非LTE模型。
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