低红移莱曼连续谱巡天 I:新的、多样的本地莱曼连续谱发射体
星系天体物理
2022-04-27 v1 宇宙学与河外天体物理
摘要
导致宇宙再电离的莱曼连续谱(LyC)光子的起源迄今未知且争议很大。由于星际介质的吸收,在再电离时期探测 LyC 光子是不可能的,这促使人们发展若干间接诊断方法,通过研究较低红移的类似体来推断星系为再电离宇宙提供 LyC 光子的速率。我们呈现低红移莱曼连续谱巡天(LzLCS),其包含用 HST/COS 对红移 z=0.2-0.4 的 66 个星系样本所做的测量。在对远紫外(FUV)光谱进行细致处理后,我们共获得 35 个以 97.725% 置信度探测到的莱曼连续谱发射体(LCEs),使已知本地 LCEs 的数量几乎增至三倍。我们根据探测到的 LyC 流量以及未探测到 LyC 流量的上限估计逃逸分数,发现 LyC 逃逸分数的范围最高达 50%。在 35 个 LzLCS LCEs 中,12 个的 LyC 逃逸分数大于 5%,使具有宇宙学相关 LyC 逃逸的已知本地 LCEs 数量翻了一倍多。
引用
@article{arxiv.2201.11716,
title = {The Low-Redshift Lyman Continuum Survey I: New, Diverse Local Lyman-Continuum Emitters},
author = {Sophia R. Flury and Anne E. Jaskot and Harry C. Ferguson and Gabor Worseck and Kirill Makan and John Chisholm and Alberto Saldana-Lopez and Daniel Schaerer and Stephan McCandless and Bingjie Wang and N. M. Ford and Timothy Heckman and Zhiyuan Ji and Mauro Giavalisco and Ricardo Amorin and Hakim Atek and Jeremy Blaizot and Sanchayeeta Borthakur and Cody Carr and Marco Castellano and Stefano Cristiani and Stephane de Barros and Mark Dickinson and Steven L. Finkelstein and Brian Fleming and Fabio Fontanot and Thibault Garel and Andrea Grazian and Matthew Hayes and Alaina Henry and Valentin Mauerhofer and Genoveva Micheva and M. S. Oey and Goran Ostlin and Casey Papovich and Laura Pentericci and Swara Ravindranath and Joakim Rosdahl and Michael Rutkowski and Paola Santini and Claudia Scarlata and Harry Teplitz and Trinh Thuan and Maxime Trebitsch and Eros Vanzella and Anne Verhamme and Xinfeng Xu},
journal= {arXiv preprint arXiv:2201.11716},
year = {2022}
}
备注
ApJS, accepted. 28 pages, 19 figures, 8 tables. Full machine readable tables will be made available by the publisher at the time of publication