论文标题

DESI调查验证:来自类星体调查光谱的目视检查结果

The DESI Survey Validation: Results from Visual Inspection of the Quasar Survey Spectra

论文作者

Alexander, David M., Davis, Tamara M., Chaussidon, E., Fawcett, V. A., Gonzalez-Morales, Alma X., Lan, Ting-Wen, Yeche, Christophe, Ahlen, S., Aguilar, J. N., Armengaud, E., Bailey, S., Brooks, D., Cai, Z., Canning, R., Carr, A., Chabanier, S., Cousinou, Marie-Claude, Dawson, K., de la Macorra, A., Dey, A., Dey, Biprateep, Dhungana, G., Edge, A. C., Eftekharzadeh, S., Fanning, K., Farr, James, Font-Ribera, A., Garcia-Bellido, J., Garrison, Lehman, Gaztanaga, E., Gontcho, Satya Gontcho A, Gordon, C., Gonzalez, Stefany Guadalupe Medellin, Guy, J., Herrera-Alcantar, Hiram K., Jiang, L., Juneau, S., Karacayli, Naim, Kehoe, R., Kisner, T., Kovacs, A., Landriau, M., Levi, Michael E., Magneville, C., Martini, P., Meisner, Aaron M., Mezcua, M., Miquel, R., Camacho, P. Montero, Moustakas, J., Munoz-Gutierrez, Andrea, Myers, Adam D., Nadathur, S., Napolitano, L., Nie, J. D., Palanque-Delabrouille, N., Pan, Z., Percival, W. J., Perez-Rafols, I., Poppett, C., Prada, F., Ramirez-Perez, Cesar, Ravoux, C., Rosario, D. J., Schubnell, M., Tarle, Gregory, Walther, M., Weiner, B., Youles, S., Zhou, Zhimin, Zou, H., Zou, Siwei

论文摘要

暗能量光谱仪器(DESI)调查验证(SV)的关键组成部分是对光谱数据的详细视觉检查(VI),以量化关键调查指标。在本文中,我们使用深层共同的SV光谱介绍了类星体调查的VI结果。我们表明,大多数(约70%)的主要调查靶标在光谱镜上被证实为类星体,〜16%的星系,〜6%的恒星和〜8%的低质量光谱缺乏可靠的特征。标准光谱管道误认了不可忽略的类星体部分,但我们表明,可以使用后上线“ Afterburner”类星体识别方法来恢复大多数。我们将这些“燃烧器”与我们的标准管道结合起来,以创建修改的管道以提高总体类星体的产量。在主要DESI调查的深度上,两个管道都达到了约99%的良好的降低纯度(可靠的红移(可靠的红移);但是,修改后的管道恢复了约94%的视觉检查的类星体,而标准管道的约为86%。我们证明,这两个管道的中间红移精度和精度分别为〜100 km/s和〜70 km/s。我们构建了复合光谱,以研究为什么标准光谱管道错过某些类星体的原因,发现它们比标准流程类Quasars更为主导 - 宿主 - 半疗法(即“ Seyfert Galaxies”的遥远类似物)和/或尘埃。我们还展示了示例光谱,以证明DESI Quasar样品的总体多样性,并提供强镜候选者,其中两个目标有助于单个光谱。

A key component of the Dark Energy Spectroscopic Instrument (DESI) survey validation (SV) is a detailed visual inspection (VI) of the optical spectroscopic data to quantify key survey metrics. In this paper we present results from VI of the quasar survey using deep coadded SV spectra. We show that the majority (~70%) of the main-survey targets are spectroscopically confirmed as quasars, with ~16% galaxies, ~6% stars, and ~8% low-quality spectra lacking reliable features. A non-negligible fraction of the quasars are misidentified by the standard spectroscopic pipeline but we show that the majority can be recovered using post-pipeline "afterburner" quasar-identification approaches. We combine these "afterburners" with our standard pipeline to create a modified pipeline to improve the overall quasar yield. At the depth of the main DESI survey both pipelines achieve a good-redshift purity (reliable redshifts measured within 3000 km/s) of ~99%; however, the modified pipeline recovers ~94% of the visually inspected quasars, as compared to ~86% from the standard pipeline. We demonstrate that both pipelines achieve an median redshift precision and accuracy of ~100 km/s and ~70 km/s, respectively. We constructed composite spectra to investigate why some quasars are missed by the standard spectroscopic pipeline and find that they are more host-galaxy dominated (i.e., distant analogs of "Seyfert galaxies") and/or dust reddened than the standard-pipeline quasars. We also show example spectra to demonstrate the overall diversity of the DESI quasar sample and provide strong-lensing candidates where two targets contribute to a single spectrum.

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