High redshift LBGs from deep broadband imaging for future spectroscopic surveys

IF 5.3 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Journal of Cosmology and Astroparticle Physics Pub Date : 2024-08-28 DOI:10.1088/1475-7516/2024/08/059
Vanina Ruhlmann-Kleider, Christophe Yèche, Christophe Magneville, Henri Coquinot, Eric Armengaud, Nathalie Palanque-Delabrouille, Anand Raichoor, Jessica Nicole Aguilar, Steven Ahlen, Stéphane Arnouts, David Brooks, Edmond Chaussidon, Todd Claybaugh, Kyle Dawson, Axel de la Macorra, Arjun Dey, Biprateep Dey, Peter Doel, Kevin Fanning, Simone Ferraro, Jaime E. Forero-Romero, Satya Gontcho A Gontcho, Gaston Gutierrez, Stephen Gwyn, Klaus Honscheid, Stephanie Juneau, Robert Kehoe, Theodore Kisner, Anthony Kremin, Andrew Lambert, Martin Landriau, Laurent Le Guillou, Michael E. Levi, Marc Manera, Paul Martini, Aaron Meisner, Ramon Miquel, John Moustakas, Eva-Maria Mueller, Andrea Muñoz-Gutiérrez, Jeffrey A. Newman, Jundan Nie, Gustavo Niz, Constantin Payerne, Vincent Picouet, Corentin Ravoux, Mehdi Rezaie, Graziano Rossi, Eusebio Sanchez, Marcin Sawicki, Edward F. Schlafly, David Schlegel, Michael Schubnell, Hee-Jong Seo, Joseph Silber, David Sprayberry, Julien Taran, Gregory Tarl..
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Abstract

Lyman break galaxies (LBGs) are promising probes for clustering measurements at high redshift, z > 2, a region only covered so far by Lyman-α forest measurements. In this paper, we investigate the feasibility of selecting LBGs by exploiting the existence of a strong deficit of flux shortward of the Lyman limit, due to various absorption processes along the line of sight. The target selection relies on deep imaging data from the HSC and CLAUDS surveys in the g, r, z and u bands, respectively, with median depths reaching 27 AB in all bands. The selections were validated by several dedicated spectroscopic observation campaigns with DESI. Visual inspection of spectra has enabled us to develop an automated spectroscopic typing and redshift estimation algorithm specific to LBGs. Based on these data and tools, we assess the efficiency and purity of target selections optimised for different purposes. Selections providing a wide redshift coverage retain 57% of the observed targets after spectroscopic confirmation with DESI, and provide an efficiency for LBGs of 83±3%, for a purity of the selected LBG sample of 90±2%. This would deliver a confirmed LBG density of ~ 620 deg-2 in the range 2.3 < z < 3.5 for a r-band limiting magnitude r < 24.2. Selections optimised for high redshift efficiency retain 73% of the observed targets after spectroscopic confirmation, with 89±4% efficiency for 97±2% purity. This would provide a confirmed LBG density of ~ 470 deg-2 in the range 2.8 < z < 3.5 for a r-band limiting magnitude r < 24.5. A preliminary study of the LBG sample 3d-clustering properties is also presented and used to estimate the LBG linear bias. A value of bLBG = 3.3 ± 0.2 (stat.) is obtained for a mean redshift of 2.9 and a limiting magnitude in r of 24.2, in agreement with results reported in the literature.
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从深宽带成像中获取高红移 LBG,用于未来的光谱测量
莱曼破碎星系(LBGs)是高红移(z > 2)条件下有希望进行聚类测量的探测器,迄今为止,莱曼-α森林测量只覆盖了这一区域。在本文中,我们研究了利用视线沿线的各种吸收过程所导致的莱曼极限短距离通量严重不足来选择 LBG 的可行性。目标选择依赖于 HSC 和 CLAUDS 勘测分别在 g、r、z 和 u 波段获得的深度成像数据,所有波段的中值深度都达到了 27 AB。利用 DESI 进行的几次专门光谱观测活动验证了这些选择。通过对光谱的目视检查,我们开发出了一种专门针对枸杞天体的自动光谱分型和红移估算算法。基于这些数据和工具,我们评估了为不同目的而优化的目标选择的效率和纯度。在利用 DESI 进行光谱确认之后,提供宽红移覆盖范围的选择保留了 57% 的观测目标,对枸杞天体的效率为 83±3%,所选枸杞天体样本的纯度为 90±2%。这样,在 r 波段极限星等 r < 24.2 的 2.3 < z < 3.5 范围内,经确认的 LBG 密度约为 620 deg-2。经过优化的高红移效率选择在光谱确认后保留了 73% 的观测目标,效率为 89±4%,纯度为 97±2%。这样,在 r 波段极限星等 r < 24.5 的 2.8 < z < 3.5 范围内,经确认的 LBG 密度约为 470 deg-2。此外,还对 LBG 样品的 3d 聚类特性进行了初步研究,并用于估算 LBG 的线性偏差。在平均红移为 2.9、r 波段极限震级为 24.2 时,得到的 bLBG 值为 3.3 ± 0.2(stat.),与文献报道的结果一致。
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来源期刊
Journal of Cosmology and Astroparticle Physics
Journal of Cosmology and Astroparticle Physics 地学天文-天文与天体物理
CiteScore
10.20
自引率
23.40%
发文量
632
审稿时长
1 months
期刊介绍: Journal of Cosmology and Astroparticle Physics (JCAP) encompasses theoretical, observational and experimental areas as well as computation and simulation. The journal covers the latest developments in the theory of all fundamental interactions and their cosmological implications (e.g. M-theory and cosmology, brane cosmology). JCAP''s coverage also includes topics such as formation, dynamics and clustering of galaxies, pre-galactic star formation, x-ray astronomy, radio astronomy, gravitational lensing, active galactic nuclei, intergalactic and interstellar matter.
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