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Table E.1.

Non-exhaustive list of SFRD measurements shown in Fig. 13 from UV, Hα and [O III]+Hβ between z ∼ 0 − 10.

Paper Redshift SFRD Tracer Int. lim.
M/yr/Mpc3 M/yr
Oesch et al. (2018) 3.80 1 . 11 0.12 + 0.13 Mathematical equation: $ -1.11_{-0.12}^{+0.13} $ UV 0.30
4.90 1 . 39 0.11 + 0.12 Mathematical equation: $ -1.39_{-0.11}^{+0.12} $ UV 0.30
5.90 1 . 64 0.12 + 0.14 Mathematical equation: $ -1.64_{-0.12}^{+0.14} $ UV 0.30
6.80 1 . 88 0.07 + 0.07 Mathematical equation: $ -1.88_{-0.07}^{+0.07} $ UV 0.30
7.90 2 . 20 0.07 + 0.06 Mathematical equation: $ -2.20_{-0.07}^{+0.06} $ UV 0.30
10.20 3 . 28 0.16 + 0.16 Mathematical equation: $ -3.28_{-0.16}^{+0.16} $ UV 0.30
Bouwens et al. (2020) 3.00 1 . 16 0.09 + 0.09 Mathematical equation: $ -1.16_{-0.09}^{+0.09} $ UV 0.30
3.80 1 . 24 0.06 + 0.06 Mathematical equation: $ -1.24_{-0.06}^{+0.06} $ UV 0.30
4.90 1 . 53 0.06 + 0.06 Mathematical equation: $ -1.53_{-0.06}^{+0.06} $ UV 0.30
5.90 1 . 85 0.06 + 0.06 Mathematical equation: $ -1.85_{-0.06}^{+0.06} $ UV 0.30
6.80 2 . 10 0.06 + 0.06 Mathematical equation: $ -2.10_{-0.06}^{+0.06} $ UV 0.30
7.90 2 . 42 0.06 + 0.06 Mathematical equation: $ -2.42_{-0.06}^{+0.06} $ UV 0.30
10.40 3 . 28 0.45 + 0.36 Mathematical equation: $ -3.28_{-0.45}^{+0.36} $ UV 0.30
Bollo et al. (2023) 4.50 1 . 26 0.06 + 0.23 Mathematical equation: $ -1.26_{-0.06}^{+0.23} $ Hα 0.27
Covelo-Paz et al. (2025) 4.45 1 . 38 0.07 + 0.05 Mathematical equation: $ -1.38_{-0.07}^{+0.05} $ Hα 0.27
5.30 1 . 54 0.06 + 0.04 Mathematical equation: $ -1.54_{-0.06}^{+0.04} $ Hα 0.27
6.15 1 . 92 0.12 + 0.10 Mathematical equation: $ -1.92_{-0.12}^{+0.10} $ Hα 0.27
Fu et al. (2025) 4.50 1 . 23 0.05 + 0.05 Mathematical equation: $ -1.23_{-0.05}^{+0.05} $ Hα 0.24
6.30 1 . 60 0.14 + 0.13 Mathematical equation: $ -1.60_{-0.14}^{+0.13} $ Hα 0.24
Khostovan et al. (2015) 0.84 1 . 26 0.04 + 0.02 Mathematical equation: $ -1.26_{-0.04}^{+0.02} $ [O III]+Hβ
1.42 1 . 08 0.06 + 0.06 Mathematical equation: $ -1.08_{-0.06}^{+0.06} $ [O III]+Hβ
2.23 0 . 97 0.12 + 0.12 Mathematical equation: $ -0.97_{-0.12}^{+0.12} $ [O III]+Hβ
3.24 1 . 07 0.11 + 0.11 Mathematical equation: $ -1.07_{-0.11}^{+0.11} $ [O III]+Hβ
GLIMPSE (this work) 7.48 ± 0.29 2 . 12 0.05 + 0.06 Mathematical equation: $ -2.12_{-0.05}^{+0.06} $ [O III]+Hβ 0.3
8.33 ± 0.26 2 . 22 0.05 + 0.06 Mathematical equation: $ -2.22_{-0.05}^{+0.06} $ [O III]+Hβ 0.3
7.48 ± 0.29 1 . 84 0.07 + 0.08 Mathematical equation: $ -1.84_{-0.07}^{+0.08} $ [O III]+Hβ 0.005
8.33 ± 0.26 2 . 09 0.08 + 0.09 Mathematical equation: $ -2.09_{-0.08}^{+0.09} $ [O III]+Hβ 0.005

Notes. The measurement from this work are given at the end of the list. All values are IMF-corrected to Chabrier (2003). GLIMPSE measurements include both SFR integration limits: the standard 0.3M yr−1 and the deeper GLIMPSE 0.005M yr−1 (LHα ∼ 1039erg s−1).

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