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The evolution of the UV luminosity and stellar mass functions of Lyman-alpha emitters from z~2 to z~6

, , , , , , , , , and . (2021)cite arxiv:2105.00007Comment: Accepted for publication in MNRAS. 20 pages, 13 figures, 4 tables.

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Resolved Lyman-\alpha properties of a luminous Lyman-break galaxy in a large ionised bubble at z = 6.53, , , , , , , and . (2019)cite arxiv:1909.06376Comment: 12 pages, 10 figures. Submitted to MNRAS.A Genomic Distance for Assembly Comparison Based on Compressed Maximal Exact Matches., , , , , , , and . IEEE ACM Trans. Comput. Biol. Bioinform., 10 (3): 793-798 (2013)Deep Learning Networks for Off-Line Handwritten Signature Recognition., , , and . CIARP, volume 7042 of Lecture Notes in Computer Science, page 523-532. Springer, (2011)AIR: Technology innovation for future spacecraft onboard computing systems., , , , , and . EUROCON, page 1-2. IEEE, (2011)The Lyman-alpha luminosity function at z=5.7-6.6 and the steep drop of the faint end: implications for reionization, , and . (2016)cite arxiv:1606.07435Comment: 16 pages, 7 figures. Submitted to MNRAS.The evolution of the UV luminosity and stellar mass functions of Lyman-alpha emitters from z~2 to z~6, , , , , , , , , and . (2021)cite arxiv:2105.00007Comment: Accepted for publication in MNRAS. 20 pages, 13 figures, 4 tables.A Framework for Acoustic Cardiac Signal Analysis., , , , , and . BIOSIGNALS, page 151-160. SciTePress, (2011)Identification of the brightest Ly\alpha\ emitters at z=6.6: implications for the evolution of the luminosity function in the re-ionisation era, , , , , and . (2015)cite arxiv:1502.07355Comment: 20 pages, main results shown in Fig. 6 and Fig. 7, submitted to MNRAS.DG investment planning analysis with renewable integration and considering emission costs., , , , , , and . EUROCON, page 1-6. IEEE, (2015)Influence of Battery Energy Storage Systems on Transmission Grid Operation With a Significant Share of Variable Renewable Energy Sources., , , , , and . IEEE Syst. J., 16 (1): 1508-1519 (2022)