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Table 3

Spectrally unresolved SPIRE rotational transitions in the ground vibrational state of CO, SiO, and HCN used in this paper.

SPIRE Molecule Rotational λ 0 F int
band transition [μm] [W m-2]

SLW CO J = 4–3 650.25 7.61e-17 (16.5%)
SiO J = 11–10 627.75 3.10e-17 (22.5%)
SiO J = 12–11 575.71 3.81e-17 (20.1%)
SiO J = 13–12 531.35 5.10e-17 (18.1%)
CO J = 5–4 520.23 9.90e-17 (15.9%)
SiO J = 14–13 493.34 4.75e-17 (18.4%)
HCN J = 7–6 483.30 1.81e-16 (15.3%)
SiO J = 15–14 460.62 3.51e-17 (19.2%)
CO J = 6–5 433.56 1.35e-16 (15.5%)
SiO J = 16–15 431.78 3.92e-17 (18.6%)
SiO J = 17–16 406.50 5.07e-17 (18.0%)
SiO J = 18–17 383.88 6.22e-17 (17.1%)
CO J = 7–6 371.65 1.71e-16 (15.4%)
SiO J = 19–18 363.77 6.49e-17 (17.4%)
SiO J = 20–19 345.54 7.64e-17 (18.2%)
SiO J = 21–20 329.16 7.76e-17 (16.4%)
CO J = 8–7 325.23 1.78e-16 (15.3%)
SiO J = 22–21 314.27 8.59e-17 (16.2%)
SiO J = 23–22 300.57 7.73e-17 (18.2%)

SSW SiO J = 22–21 314.27 8.03e-17 (20.0%)
SiO J = 23–22 300.57 8.66e-17 (19.1%)
CO J = 9–8 289.12 2.02e-16 (15.8%)
SiO J = 24–23 288.10 9.11e-17 (19.4%)
HCN J = 12–11 282.03 3.77e-17 (87.7%)
SiO J = 25–24 276.63 6.24e-17 (20.8%)
SiO J = 26–25 266.03 8.10e-17 (19.1%)
HCN J = 13–12 260.36 3.22e-16 (16.0%)
CO J = 10–9 260.24 Blended
SiO J = 27–26 256.21 8.30e-17 (23.4%)
SiO J = 28–27 247.10 1.18e-16 (18.1%)
SiO J = 29–28 238.61 7.74e-17 (19.8%)
CO J = 11–10 236.61 2.30e-16 (15.6%)
SiO J = 31–30 223.31 1.07e-16 (17.8%)
CO J = 12–11 216.93 2.41e-16 (42.3%)
SiO J = 32–31 216.36 1.17e-16 (18.2%)
SiO J = 33–32 209.82 1.15e-16 (23.2%)
SiO J = 34–33 203.71 9.65e-17 (18.3%)
CO J = 13–12 200.27 2.38e-16 (15.6%)
SiO J = 35–34 197.90 1.05e-16 (17.8%)

Notes. The rest wavelength and integrated line strength Fint are listed. The percentages in parentheses indicate the uncertainty on Fint, which includes both the fitting uncertainty and the SPIRE absolute flux uncertainty of 15%.

(⋆)

Lines flagged for potential line blends (see Sect. 2.3). Transitions that might contribute to the blended line are listed immediately below the flagged transition.

(a)

Identified blends of strong water transitions.

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