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Table D.1.

Direct outflow properties of the QSO2s.

QSO2 / Line AV log(ne)[SII] log(ne)TR Flux x10−15 log(Lout) vout vmax FWHM rout
[mag] [cm−3] [cm−3] [erg cm−2 s−1)] [erg s−1] [km s−1] [km s−1] [km s−1] [kpc]
J0802+25 0.74 0.22 + 0.28 Mathematical equation: $ ^{+0.28}_{-0.22} $ 2.71 0.09 + 0.08 Mathematical equation: $ ^{+0.08}_{-0.09} $ 3.56 0.14 + 0.12 Mathematical equation: $ ^{+0.12}_{-0.14} $
Paα (i) 2.41±0.39 41.09 580±32 1191±52 719±48 0.96±0.09
(b) 3.52±0.58 41.25 -325 1330 1183 0.96±0.09
[Si VI] (i) 0.97±0.3 40.24 775±151 1415±219 753±186 < 1.13
(b) 0.28±0.3 39.7 -313 1469 1361 < 1.13

J0945+17 1.36 0.09 + 0.12 Mathematical equation: $ ^{+0.12}_{-0.09} $ 2.62 0.09 + 0.07 Mathematical equation: $ ^{+0.07}_{-0.09} $ 3.39 0.1 + 0.08 Mathematical equation: $ ^{+0.08}_{-0.1} $
Paα (i) 3.32±1.26 41.69 -132±14 843±38 837±41 2.13±0.15
(b) 0.51±0.33 40.88 -374±129 1786±129 1663 2.13±0.15
[Si VI] (i) 0.62±0.29 40.5 -248±41 895±41 762 2.67±0.57
(b) 0.65±0.36 40.52 -449±288 1809±408 1601±340 2.67±0.57

J1034+60 0.84 0.31 + 0.22 Mathematical equation: $ ^{+0.22}_{-0.31} $ 2.78 0.09 + 0.08 Mathematical equation: $ ^{+0.08}_{-0.09} $ 2.99 0.2 + 0.19 Mathematical equation: $ ^{+0.19}_{-0.2} $
Brγ (b) 12.03±2.16 42.46 -127±10 1398±11 1496 1.26±0.28
[Si VI] (b) 21.3±3.78 41.17 -194±48 1475±48 1508 1.07±0.23

J1440+53 0.62 0.22 + 0.25 Mathematical equation: $ ^{+0.25}_{-0.22} $ 3.03 0.04 + 0.04 Mathematical equation: $ ^{+0.04}_{-0.04} $ 3.92 0.08 + 0.09 Mathematical equation: $ ^{+0.09}_{-0.08} $
Brγ (i) 5.48±1.76 41.82 -49±22 505±54 537±58 0.32±0.17
(b) 1.92±0.4 41.37 -300±131 1991±131 1991 0.32±0.17
[Si VI] (i) 3.25±3.7 40.05 -14±320 417±320 475 < 0.62
(b) 11.07±5.77 40.58 -364±407 2073±815 2012±832 < 0.62

J1455+32 0.50 0.03 + 0.19 Mathematical equation: $ ^{+0.19}_{-0.03} $ 3.06 0.11 + 0.09 Mathematical equation: $ ^{+0.09}_{-0.11} $ 3.88 0.06 + 0.05 Mathematical equation: $ ^{+0.05}_{-0.06} $
Paα (i) 1.04±0.63 40.78 89±181 779±267 812±231 0.7±0.35
(b) 0.49±1.01 40.45 -60 1237±419 1386±492 0.7±0.35
[Si VI] (i) 0.19±0.12 39.59 48±242 579±302 625±213 < 1.04
(b) 0.35±0.44 39.85 -60 1565±1718 1772±2023 < 1.04

J1713+57 0.65 0.06 + 0.22 Mathematical equation: $ ^{+0.22}_{-0.06} $ 2.88 0.09 + 0.09 Mathematical equation: $ ^{+0.09}_{-0.09} $ 4.06 0.06 + 0.05 Mathematical equation: $ ^{+0.05}_{-0.06} $
Paα (i) 3.01±1.26 41.49 14±50 1054±88 1225±85 1.21±0.36
(b) 1.6±0.97 41.21 -619±370 2781±776 2546±803 1.21±0.36
[Si VI] (i) 0.55±0.29 40.29 14 964±104 1119±122 1.25±0.93
(b) 0.55±0.25 40.29 -618 2288±89 1966±104 1.25±0.93

Notes. (1) QSO2 ID and emission line component. (2) AV = 3.1 × E(B−V) obtained from the trans-auroral density estimates from Bessiere et al. (2024) and shown in Table 4. (3-4) Electron densities from Table 4. (5) Emission line fluxes from Tables A.1-A.6 of Appendix A. (6) Outflow luminosities (LHβ, L[Si VI]). (7-9) Velocity shift (vs), vmax = |vs|+2σ (with σ ≈ FWHM/2.355), and FWHM of the intermediate and broad components shown in Tables A.1-A.6 of Appendix A. (10) Ouflow extent from Table 5.

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