Open Access

Table D.2.

Model A–flux-resolved.

Parameter F1 F2 F3 F4 F5
Continuum
Γ 1 . 54 0.11 + 0.13 Mathematical equation: $ 1.54^{+0.13}_{-0.11} $ 2 . 09 0.18 + 0.28 Mathematical equation: $ 2.09^{+0.28}_{-0.18} $ 2 . 218 0.050 + 0.050 Mathematical equation: $ 2.218^{+0.050}_{-0.050} $ 2 . 221 0.048 + 0.048 Mathematical equation: $ 2.221^{+0.048}_{-0.048} $ 2 . 437 0.064 + 0.122 Mathematical equation: $ 2.437^{+0.122}_{-0.064} $
log10L (erg/s) 42 . 399 0.020 + 0.026 Mathematical equation: $ 42.399^{+0.026}_{-0.020} $ 42 . 772 0.040 + 0.063 Mathematical equation: $ 42.772^{+0.063}_{-0.040} $ 42 . 8444 0.0084 + 0.0083 Mathematical equation: $ 42.8444^{+0.0083}_{-0.0084} $ 42 . 9724 0.0082 + 0.0076 Mathematical equation: $ 42.9724^{+0.0076}_{-0.0082} $ 43 . 161 0.017 + 0.030 Mathematical equation: $ 43.161^{+0.030}_{-0.017} $

Ionized absorber 1
NH (1023 cm−2) 13 . 3 6.6 + 47.8 Mathematical equation: $ 13.3^{+47.8}_{-6.6} $ 15 . 4 4.3 + 26.3 Mathematical equation: $ 15.4^{+26.3}_{-4.3} $ > 160 > 151 > 10.4
log ξ 3 . 40 0.17 + 0.46 Mathematical equation: $ 3.40^{+0.46}_{-0.17} $ 3 . 45 0.11 + 0.30 Mathematical equation: $ 3.45^{+0.30}_{-0.11} $ 4 . 094 0.553 + 0.095 Mathematical equation: $ 4.094^{+0.095}_{-0.553} $ 4 . 13 0.61 + 0.14 Mathematical equation: $ 4.13^{+0.14}_{-0.61} $ 3 . 47 0.33 + 0.59 Mathematical equation: $ 3.47^{+0.59}_{-0.33} $
vturb (km/s) 17900 4300 + 4600 Mathematical equation: $ 17900^{+4600}_{-4300} $ 15900 2600 + 2600 Mathematical equation: $ 15900^{+2600}_{-2600} $ > 28000 > 27000 > 25300
vout (c) 0 . 272 0.030 + 0.011 Mathematical equation: $ 0.272^{+0.011}_{-0.030} $ 0 . 2714 0.0126 + 0.0073 Mathematical equation: $ 0.2714^{+0.0073}_{-0.0126} $ 0 . 314 0.011 + 0.011 Mathematical equation: $ 0.314^{+0.011}_{-0.011} $ 0 . 333 0.015 + 0.014 Mathematical equation: $ 0.333^{+0.014}_{-0.015} $ 0 . 380 0.036 + 0.023 Mathematical equation: $ 0.380^{+0.023}_{-0.036} $
ΔW/ν 188.56/4 164.38/4 98.11/4 70.33/4 17.49/4
P0 6.2 × 10−40 1.1 × 10−34 2.7 × 10−20 2.9 × 10−14 8.7 × 10−3

Ionized absorber 2
NH (1023 cm−2) > 229 13 . 4 4.7 + 21.7 Mathematical equation: $ 13.4^{+21.7}_{-4.7} $ - - -
log ξ 4 . 176 0.496 + 0.084 Mathematical equation: $ 4.176^{+0.084}_{-0.496} $ 3 . 67 0.17 + 0.33 Mathematical equation: $ 3.67^{+0.33}_{-0.17} $ - - -
vturb (km/s) > 27000 > 26000 - - -
vout (c) 0 . 408 0.028 + 0.044 Mathematical equation: $ 0.408^{+0.044}_{-0.028} $ 0 . 423 0.016 + 0.017 Mathematical equation: $ 0.423^{+0.017}_{-0.016} $ - - -
ΔW/ν 28.64/4 23.88/4 - - -
P0 3.3 × 10−5 3.6 × 10−4 - - -
W-Stat/d.o.f. 111.395/94 = 1.19 58.9714/91 = 0.65 116.398/95 = 1.23 128.398/97 = 1.32 104.418/97 = 1.08

Notes. Best-fit parameters for model A applied to the five flux-resolved spectra (F1–F5). For each fit, the W-Stat/d.o.f. and the reduced statistic are shown. Spectra that do not require the second absorber have missing parameters indicated by −. The ΔW/ν row reports the W-statistic improvement and the number of additional free parameters when adding each absorber component; P0 = exp(−ΔAIC/2) is the AIC evidence ratio (lower values indicate stronger support for the component).

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