Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-01T23:42:38.038730Z
Paper Citation Record · LEDGER
As of 5 August 2026, this Paper Citation Record lists 100 of 203 outbound references and 0 inbound Pith citation observations for arXiv:2607.15344.
A citation records a reference. It does not transfer a finding from one paper to another.
Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-01T23:42:38.038730Z
One-hop event checks from named stored sources.
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Pith citing papers itemized under the disclosed page cap.
Source: paper_references, paper_reference_links
A source-named dated measurement, never combined with another source.
Source: cited_works
100 of 203 outbound references displayed
External citation measurements
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn L., & Norman, M
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2012, ApJ, 755, 164, doi: 10.1088/0004-637X/755/2/164
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn V., Leitner, S
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn P., Mac Low, M
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn C., & Jiang, Y.-F
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2023, MNRAS, 527, 11372, doi: 10.1093/MNRAS/STAD3902
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2021, MNRAS, 504, 2346, doi: 10.1093/mnras/stab1030
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2004, MNRAS, 352, 376, doi: 10.1111/j.1365-2966.2004.07883.x
Reference 8
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2026, A&A, 707, A396, doi: 10.1051/0004-6361/202557901
Reference 10
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn J., Illingworth, G
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn J., Aravena, M., Decarli, R., et al
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2023, Nature Astronomy, 7, 731, doi: 10.1038/s41550-023-01937-7
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn L., & Norman, M
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn S., & Quinn, T
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn M., Stanway, E
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn C., Engelbracht, C
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2024, A&A, 685, A99, doi: 10.1051/0004-6361/202347230
Reference 21
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2025, A&A, 704, A290, doi: 10.1051/0004-6361/202556471
Reference 22
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2026, MNRAS, 548, doi: 10.1093/MNRAS/STAG740
Reference 23
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2024, ApJL, 976, L15, doi: 10.3847/2041-8213/AD8DC9
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn Modelling baryonic feedback for survey cosmology
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2018, MNRAS, 481, 1690, doi: 10.1093/MNRAS/STY2380
Reference 27
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn A., Leitherer, C., & Chen, Y
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn R., Kereˇ s, D., Hopkins, P
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn E., Lam, N., et al
Reference 30
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn W., Papovich, C., Finkelstein, S
Reference 31
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2022, MNRAS, 513, 2535, doi: 10.1093/mnras/stac1026
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn A., Schaye, J., Bower, R
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2022, MNRAS, 518, 425, doi: 10.1093/MNRAS/STAC2737
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2024, A&A, 684, A75, doi: 10.1051/0004-6361/202346698
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2025, ApJ, 980, 197, doi: 10.3847/1538-4357/ADAB72
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn L., Tacchella, S., ¨Ubler, H., et al
Reference 39
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2020, A&A, 638, A123, doi: 10.1051/0004-6361/201936339 Dav´ e, R., Angl´ es-Alc´ azar, D., Narayanan, D., et al
Reference 40
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2017, A&A, 605, A70, doi: 10.1051/0004-6361/201730419
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2023, MNRAS, 523, 3201, doi: 10.1093/MNRAS/STAD1557
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2018, ApJS, 239, 35, doi: 10.3847/1538-4365/AAEE8C
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2025, MNRAS, 537, 629, doi: 10.1093/MNRAS/STAF006
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2019, A&A, 631, A121, doi: 10.1051/0004-6361/201936275
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 2014, MNRAS, 444, 1453, doi: 10.1093/mnras/stu1227
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn P., Whitler, L., et al
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn R., Yan, R., & Tinker, J
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Reference 73
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The Azahar Project: Non-Thermal Physics Drives Star Formation Burstiness and the Evolution of the UV Luminosity Density at Cosmic Dawn 1996, ApJ, 461, 20, doi: 10.1086/177035
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