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Table A.1

System parameters used in this paper.

System Name d / pc log10(L* / L?) Teff / K M* / M? t* / Myr Disc location and extent / au Disc data Age refs.
CD-52 2472* - 152.6 ± 0.6 0.196 ± 0.006 5740 ± 70 11 ± 3 SED 5
CPD-72 2713 - 36.62 ± 0.03 -0.730 ± 0.005 3910 ± 70 0.80 ± 0.02 24 ±3 ALMA BPMG, 2
GJ 581* - 6.30 ±0.01 -1.919 ±0.009 3220 ± 70 5000 ± 3000 16 ± 7 SED 17
GJ 649 - 10.380 ± 0.003 -1.345 ± 0.003 3600 ± 70 0.40 ± 0.06 4000 ± 2000 30 ± 20 SED 34
HD 166 - 13.77 ±0.01 -0.198 ± 0.003 5480 ± 70 10 ± 10 ? 40 ± 20 Herschel 70 µm 12, 19, 29, 32, 33, 35
HD 203 - 39.9 ±0.1 0.630 ± 0.003 6840 ± 70 1.43 ± 0.01 24 ± 3 29 ± 6 SED BPMG, 2
HD 377 - 38.48 ± 0.09 0.068 ± 0.004 5780 ± 70 1.07 ±0.05 220 ± 50 60 ± 10 SED 10, 31, 32
HD 870 - 20.62 ± 0.01 -0.296 ± 0.003 5360 ± 70 3000 ±1000 60 ± 10 SED 5,31,32
HD 1404 s And 42 ± 1 1.34 ±0.02 8700 ± 100 400 ± 200 40 ± 10 SED 5, 12, 35
HD 1461 - 23.45 ± 0.03 0.094 ± 0.003 5740 ± 70 1.07 ±0.04 6000 ±1000 50 ± 30 ? 150 ± 40 Herschel 100 µm 5, 27, 31
HD 1466 - 42.92 ± 0.06 0.199 ±0.003 6120 ± 70 1.15 ±0.01 45 ±4 11 ± 2 SED THA, 2
HD 2262 k Phe 22.2 ± 0.2 1.068 ±0.004 7790 ± 70 600 ± 200 34 ± 9 SED 12, 26, 35
HD 3003* ß3 Tuc 45.8 ± 0.3 1.28 ±0.01 9300 ± 100 2.10 ± 0.02 45 ± 4 21 ± 6 SED THA, 2
HD 3296 - 44.9 ± 0.1 0.526 ± 0.003 6480 ± 70 1400 ± 500 100 ± 50 SED 14, 33
HD 3670 - 77.4 ± 0.2 0.396 ± 0.003 6400 ± 70 1.30 ±0.02 100 ± 20 SED COL, 2
HD 5133 - 13.97 ±0.01 0.544 ± 0.003 4900 ± 70 2000 ± 1000 34 ± 7 SED 8, 12, 35
HD 7570 v Phe 15.17 ±0.04 0.290 ± 0.002 6220 ± 70 4000 ± 2000 30 ± 10 SED 12, 19, 29, 32, 35
HD 8907 - 33.19 ±0.05 0.294 ± 0.002 6250 ± 70 500 ± 200 60 ± 10 ? 160 ± 20 Herschel 70 µm 14, 31, 32
HD 9672 49 Cet 57.0 ± 0.3 1.185 ±0.009 8750 ± 70 1.98 ±0.01 45 ±5 62±4- ? 210 ± 4 ALMA ARG, 39
HD 10008 EX Cet 24.03 ± 0.03 -0.327 ± 0.003 5280 ± 70 0.86 ±0.01 24 ± 3 50 ± 20 SED BPMG, 2
HD 10472 - 71.0 ± 0.1 0.561 ± 0.002 6710 ±70 1.39 ±0.01 110 ± 20 SED COL, 2
HD 10647 q1 Eri 17.34 ±0.02 0.189 ±0.002 6100 ±70 1700 ± 600 54 ± 2, 63 ± 2 ? 99 ± 3, 104 ± 6 ALMA 4, 12, 14, 29, 31, 32
HD 10700 t Cet 3.60 ±0.01 -0.315 ±0.003 5430 ± 70 6000 ± 2000 ALMA 14, 19, 29
HD 11171 X Cet 23.3 ± 0.2 0.763 ± 0.007 7110 ± 70 1.57 ± 0.04 1000 ± 400 40 ± 10 SED 12, 35
HD 12039* DK Cet 41.36 ±0.09 -0.046 ± 0.004 5670 ± 70 1.04 ±0.02 45 ±4 15 ±3 SED THA, 2
HD 13161* ß Tri 38.9 ±0.5 1.86 ±0.01 7880 ± 70 800 ± 200 15 ±4? 290 ± 10 Herschel 70 µm 5, 12
HD 13246 - 45.55 ± 0.06 0.24 ±0.01 6160 ±70 45 ±4 80 ± 30 SED THA, 2
HD 15115 - 48.9 ±0.1 0.56 ±0.01 6720 ± 70 1.40 ± 0.02 45 ± 4 44 ±6 ? 92 ± 2 ALMA THA, 2
HD 16743 - 57.84 ± 0.09 0.708 ± 0.003 6900 ± 70 1.56 ±0.01 45 ±5 50 ± 50 ? 260 ± 70 Herschel 100 µm ARG, 39
HD 17094* µ Cet 26.5 ± 0.2 1.013 ±0.008 7060 ± 70 1.68 ±0.04 1500 ± 300 90 ± 100 SED 5, 33
HD 17925* EP Eri 10.355 ± 0.005 -0.398 ± 0.003 5140 ±70 200 ± 100 6±6 ? 30 ± 10 Herschel 100 µm 12, 32, 33, 35
HD 19668 IS Eri 38.66 ± 0.07 -0.237 ± 0.006 5420 ± 70 0.94 ±0.01 13 ±4 SED ABDMG, 2
HD 21997 - 69.5 ± 0.2 1.037 ±0.008 8400 ± 70 1.83 ±0.02 68 ± 4 ? 120 ± 4 ALMA COL, 2
HD 22049 ? Eri 3.203 ± 0.005 -0.472 ± 0.003 5090 ± 70 800 ± 400 ALMA 19, 26, 32
HD 22484 10 Tau 14.0 ± 0.1 0.501 ± 0.007 6000 ± 70 5000 ± 2000 8 ± 8 ? 70 ± 30 Herschel 70 µm 5, 12, 19, 32, 35
HD 23356 - 13.949 ± 0.007 -0.524 ± 0.004 4980 ± 70 38 ± 8 SED 12, 29, 35
HD 23484 - 16.162 ±0.006 -0.389 ± 0.002 5130 ± 70 4000 ± 2000 20 ± 10 ? 110 ± 30 Herschel 70 µm 4, 12, 29
HD 25457 - 18.76 ± 0.04 0.312 ± 0.004 6270 ± 70 1.23 ± 0.01 45 ± 8 SED ABDMG, 2
HD 27045 ?2 Tau 29.3 ± 0.2 0.846 ± 0.006 7690 ± 70 30 ± 10 SED 30
HD 27290 y Dor 20.4 ± 0.1 0.821 ± 0.006 7140 ± 70 2000 ± 1000 14 ± 7 ? 280 ± 40 Herschel 70 µm 6, 12, 35
HD 28355 b Tau 48.5 ± 0.4 1.248 ± 0.007 7830 ± 70 800 ± 100 30 ± 30 ? 100 ± 60 Herschel 100 µm HYA, 3
HD 29391 51 Eri 29.8 ± 0.1 0.754 ± 0.005 7320 ± 70 700 ± 500 21 ± 6 SED 33
HD 30422 EXEri 57.4 ±0.1 0.927 ± 0.003 7700 ± 70 1.33 ±0.01 700 ± 200 40 ± 40 ? 140 ± 70 Herschel 70 µm 6
HD 30447 - 80.4 ± 0.2 0.561 ± 0.004 6700 ± 70 1.40 ±0.01 150 ± 60 SED COL, 2
HD 30495 58 Eri 13.24 ± 0.01 -0.016 ± 0.002 5850 ± 70 1.06 ±0.01 45 ±5 20 ± 10 ? 60 ± 20 Herschel 70 µm ARG, 39
HD 31295 p1 Ori 34.2 ±0.6 1.16 ± 0.01 8690 ± 70 200 ± 80 50 ± 30 ? 230 ± 50 Herschel 100 µm 5, 6, 14
HD 32297 - 132 ± 1 0.92 ± 0.02 7790 ± 70 91 ±2 ? 153 ± 2 ALMA 18, 25
HD 32977* 1 Tau 61.9 ± 0.7 1.362 ± 0.009 8410 ± 70 400 ± 200 30 ± 10 SED 5, 6
HD 35114 AS Col 47.60 ± 0.07 0.318 ±0.004 6230 ± 70 19 ±4 SED 31, 36
HD 35850* AF Lep 26.86 ± 0.02 0.265 ± 0.002 6050 ± 70 24 ±3 46 ±9 SED BPMG, 2
HD 36968 - 149.5 ± 0.6 0.648 ± 0.005 6770 ± 70 1.54 ± 0.02 35 ± 5 100 ± 20 SED OCT, 24
HD 37484 - 59.01 ± 0.08 0.543 ± 0.002 6710 ± 70 1.37 ± 0.01 70 ± 20 SED COL, 2
HD 38206 - 71.3 ±0.4 1.490 ±0.008 10400 ±100 2.36 ± 0.02 ALMA COL, 2
HD 38397 - 53.73 ± 0.09 0.134 ±0.003 5960 ± 70 30 ± 30 ? 120 ± 40 Herschel 70 µm COL, 2
HD 38678 ? Lep 21.9 ±0.2 1.212 ±0.005 8810 ± 70 300 ± 100 21 ± 5 SED 12, 25, 35
HD 40136 ? Lep 14.50 ± 0.08 0.744 ± 0.005 7030 ± 70 17 ± 4 SED 5, 12
HD 43989 - 51.9 ±0.1 0.196 ±0.006 5930 ± 70 1.23 ±0.02 6±6 SED COL, 2
HD 46190 - 84.3 ± 0.2 1.13 ±0.03 8400 ± 200 20 ± 20 SED 25
HD 48370 - 36.03 ± 0.07 -0.110 ±0.003 5580 ± 70 30 ± 30 ? 160 ± 50 Herschel 70 µm 9, 22
HD 48682 ?5 Aur 16.64 ±0.05 0.270 ± 0.005 6010 ±70 4000 ± 2000 51 ±6? 200 ± 20 Herschel 70 µm 12, 32, 35
HD 50554 - 31.17 ±0.06 0.176 ±0.003 6000 ± 70 4000 ± 2000 40 ± 30 ? 140 ± 50 Herschel 70 µm 1, 16, 29, 32
HD 53143 - 18.35 ±0.01 -0.232 ± 0.003 5410 ± 70 1000 ± 500 19 ±5 ? 120 ± 10 Herschel 70 µm 32
HD 58715 ß CMi 49 ± 3 2.25 ± 0.01 9330 ± 70 220 ± 20 11 ± 4 SED 33
HD 59967 - 21.76 ±0.01 -0.051 ± 0.003 5790 ± 70 50 ± 20 SED 32
HD 61005 The Moth 36.45 ± 0.04 -0.196 ± 0.003 5400 ± 70 45 ± 5 ALMA ARG, 39
HD 69830 - 12.56 ±0.01 -0.221 ± 0.001 5420 ± 70 0.90 ± 0.04 6000 ± 2000 0.8 ±0.2 SED 5, 12
HD 70313 - 52.0 ± 0.3 1.170 ±0.006 8360 ± 70 1.9 ± 0.1 250 ± 50 60 ± 40 ? 190 ± 60 Herschel 100 µm 5, 33
HD 71043 - 73.1 ± 0.4 1.382 ±0.007 9650 ± 80 2.23 ± 0.02 15 ±4 SED CAR, 2
HD 71155 30 Mon 36.4 ± 0.5 1.61 ± 0.02 9800 ± 100 2.32 ± 0.04 200 ± 100 30 ± 20 ? 80 ± 20 Herschel 70 µm 5, 6, 35
HD 72905 p1 UMa 14.45 ± 0.01 (4 ± 3) × 10-3 5860 ± 70 200 ± 100 29 ± 8 SED 12, 29, 32, 35
HD 75616 - 35.79 ± 0.04 0.258 ± 0.002 6260 ± 70 1000 ± 600 140 ± 40 SED 12, 35
HD 76151 - 16.84 ±0.01 -0.012 ± 0.003 5830 ± 70 1.07 ±0.01 21 ±5 SED 5, 12, 29, 32, 35
HD 85364 6 Sex 65.1 ±0.4 1.104 ± 0.007 8040 ± 70 1.8 ± 0.1 70 ± 20 SED 5, 6
HD 87696 21 LMi 27.0 ± 0.2 1.000 ± 0.009 7880 ± 70 800 ± 200 17 ± 4 SED 6, 12, 35
HD 90905 - 31.01 ± 0.09 0.155 ± 0.003 6000 ± 70 400 ± 200 33 ± 8 SED 31, 32
HD 92536 - 157 ± 1 1.95 ± 0.03 11600 ± 100 3.11 ± 0.07 18 ± 6 SED IC2602, 7
HD 92945 - 21.53 ±0.02 -0.432 ± 0.002 5150 ±70 0.87 ±0.01 200 ±100 ALMA 5, 14, 32
HD 95418 ß UMa 30 ± 1 1.849 ±0.005 9790 ± 70 2.59 ± 0.03 410 ± 20 20 ± 10 ? 50 ± 20 Herschel 100 µm UMA, 15
HD 102458 - 113.0 ±0.4 0.430 ± 0.006 5680 ± 70 1.38 ±0.04 15 ±3 12 ± 3 SED LCC, 28
HD 102647 ß Leo 11.00 ±0.06 1.134 ±0.006 8450 ± 70 1.90 ±0.01 45 ±5 7 ± 1 ? 79 ± 4 Herschel 70 µm ARG, 39
HD 103234 - 101.8 ± 0.5 0.617 ± 0.004 6670 ± 70 15 ±3 12 ± 3 SED LCC, 28
HD 103703* - 107.1 ±0.5 0.567 ± 0.005 6410 ± 70 15 ±3 8 ± 2 SED LCC, 28
HD 104231 - 102.4 ± 0.5 0.507 ± 0.005 6310 ±70 15 ±3 8 ± 2 SED LCC, 28
HD 104860 - 45.14 ±0.07 0.072 ± 0.004 5940 ± 70 200 ±100 60 ± 30 ? 150 ± 40 Herschel 100 µm 14, 31, 32, 33
HD 105613 - 104.3 ± 0.4 0.973 ± 0.005 7980 ± 70 15 ± 3 8 ± 2 SED LCC, 28
HD 107146 - 27.45 ± 0.03 -(2 ± 3) × 10-3 5830 ± 70 ALMA 5, 14, 31, 32
HD 107649 - 108.0 ±0.6 0.452 ± 0.006 6290 ± 70 15 ± 3 15 ±3 SED LCC, 28
HD 109085 ? Crv 18.0 ± 0.2 0.686 ± 0.008 6940 ± 70 1.39 ±0.03 126 ±2 ? 179 ± 2 ALMA 5, 6, 14, 31, 35
HD 109832 - 108.0 ± 0.5 0.728 ± 0.005 6930 ± 70 15 ± 3 80 ± 20 SED LCC, 28
HD 110058 - 130 ± 1 0.78 ± 0.07 7900 ± 200 1.53 ±0.07 15 ± 3 ALMA LCC, 28
HD 110411 ? Vir 38.1 ± 0.3 1.176 ± 0.009 8730 ± 70 300 ± 200 30 ± 20 ? 190 ± 40 Herschel 70 µm 12, 14, 35
HD 110634 - 124 ± 1 0.643 ± 0.007 6750 ± 70 15 ± 3 12 ± 3 SED LCC, 28
HD 110897 10 CVn 17.56 ±0.02 0.047 ± 0.002 5890 ± 70 6000 ± 3000 30 ± 20 ? 130 ± 50 Herschel 70 µm 23, 29, 32, 35
HD 111103 - 130.4 ±0.6 0.433 ± 0.006 6310 ±70 15 ± 3 27 ± 5 SED LCC, 28
HD 111520 - 108.6 ±0.6 0.431 ± 0.008 6140 ± 70 15 ± 3 50 ± 10 ? 100 ± 10 ALMA LCC, 28
HD 111631 - 10.65 ±0.01 -1.000 ±0.003 3980 ± 70 0.64 ± 0.02 600 ± 300 400 ± 200 SED 12, 14, 35
HD 112429 8 Dra 29.36 ± 0.08 0.749 ± 0.004 7120 ±70 1400 ± 900 60 ± 20 SED 5, 33
HD 113337 - 36.18 ± 0.06 0.615 ± 0.003 6690 ± 70 1500 ± 500 30 ± 20 ? 160 ± 30 Herschel 70 µm 5, 6
HD 113524 - 119 ± 1 0.461 ± 0.009 6310 ±70 15 ± 3 11 ± 3 SED LCC, 28
HD 113556 - 101.2 ±0.4 0.653 ± 0.004 6840 ± 70 15 ± 3 100 ± 30 SED LCC, 28
HD 114082 - 95.4 ± 0.4 0.579 ± 0.003 6000 ± 70 15 ± 3 29 ± 6 SED LCC, 28
HD 115617 61 Vir 8.51 ± 0.02 -0.080 ± 0.003 5570 ± 70 0.92 ± 0.04 4000 ± 2000 ALMA 12, 14, 29, 31, 35
HD 115820 - 115.5 ± 0.7 0.843 ± 0.006 7480 ± 70 15 ± 3 27 ± 6 SED LCC, 28
HD 115892 l Cen 17.8 ± 0.4 1.36 ± 0.02 9160 ± 70 2.03 ± 0.03 200 ± 100 20 ± 20 SED CARN, 37
HD 120326 - 114 ± 2 0.65 ±0.01 6930 ± 70 16 ± 3 31 ± 6 SED LCC/UCL, 28
HD 121191 - 131.6 ±0.9 0.857 ± 0.006 7690 ± 70 16 ± 3 ALMA UCL/LCC, 28
HD 121617 - 116 ± 1 1.15 ±0.03 9000 ± 200 16 ± 3 50 ±7 ? 106 ± 7 ALMA UCL/LCC, 28
HD 123889 - 128 ± 1 0.665 ± 0.007 6750 ± 70 16 ± 2 34 ± 8 SED UCL, 28
HD 125162 ? Boo 30.3 ± 0.3 1.24 ±0.03 8600 ± 100 1.58 ± 0.03 300 ± 100 6±5? 210 ± 20 Herschel 70 µm 6, 12, 33, 35
HD 125451 18 Boo 26.21 ± 0.09 0.581 ± 0.003 6720 ± 70 1400 ± 600 90 ± 20 SED 6
HD 125541 - 160 ± 2 0.756 ± 0.008 7160 ±70 1.57 ±0.03 16 ± 2 19 ± 4 SED UCL, 28
HD 126062 - 132 ± 1 1.23 ±0.03 9100 ± 100 16 ± 2 300 ± 80 SED UCL, 28
HD 127762* ? Boo 26.7 ± 0.3 1.519 ±0.004 7670 ± 70 900 ± 400 130 ± 40 SED 5, 14, 33
HD 127821 - 31.68 ±0.04 0.470 ± 0.003 6590 ± 70 1300 ± 500 70 ± 10 ? 180 ± 20 Herschel 70 µm 5, 6
HD 128311 HN Boo 16.33 ±0.02 -0.541 ± 0.003 4840 ± 70 500 ± 200 140 ± 70 SED 5, 32
HD 131511* DE Boo 11.37 ±0.06 -0.287 ± 0.005 5070 ± 70 1000 ± 500 100 ± 70 SED 19, 32, 33, 35
HD 131835 - 133 ±4 0.98 ± 0.02 7690 ± 70 16 ± 2 40 ±2 ? 127 ± 2 ALMA UCL, 28
HD 134888 - 112 ± 1 0.502 ± 0.008 6320 ± 70 1.4 ± 0.1 16 ± 2 60 ± 10 SED UCL, 28
HD 135379 ß Cir 28.4 ± 0.3 1.246 ± 0.007 8500 ± 100 2.06 ± 0.04 500 ± 200 20 ± 5 SED 6
HD 135599 - 15.81 ±0.01 -0.383 ± 0.005 5260 ± 70 1200 ± 500 49 ±9 SED 32, 33
HD 135953 - 130 ± 1 0.403 ± 0.009 6120 ±70 1.21 ± 0.03 16 ± 2 80 ± 10 SED UCL, 28
HD 138813 - 137 ± 1 1.32 ±0.01 8900 ± 100 10 ± 3 ALMA USCO, 28
HD 139006* a CrB 23.7 ± 0.6 1.86 ±0.02 9740 ± 90 2.64 ± 0.06 300 ± 100 3 ±4 ? 90 ± 10 Herschel 70 µm 6, 12, 35
HD 139664 g Lup 17.38 ± 0.08 0.528 ± 0.004 6710 ± 70 1.25 ±0.03 ALMA 6, 10
HD 141943 NZ Lup 60.2 ± 0.2 0.358 ± 0.004 5750 ± 70 1.27 ± 0.03 16 ± 2 40 ± 10 SED UCL, 28
HD 143894 p Ser 51.3 ± 0.4 1.42 ± 0.01 8670 ± 70 500 ± 100 240 ± 70 SED 6
HD 145689 - 55.5 ± 0.2 1.009 ± 0.004 8300 ± 70 1.80 ± 0.02 45 ± 5 14 ± 3 SED ARG, 39
HD 145964 - 112 ± 2 1.56 ±0.01 9740 ± 80 10 ± 3 90 ± 30 SED USCO, 28
HD 145972 - 125.4 ± 0.9 0.727 ± 0.008 6990 ± 70 1.56 ±0.04 16 ± 2 13 ±3 SED UCL, 28
HD 146181 - 124.5 ±0.7 0.431 ± 0.006 6380 ± 70 16 ± 2 ALMA UCL, 28
HD 146624 d Sco 43.4 ± 0.6 1.32 ± 0.02 9600 ± 100 2.16 ± 0.03 29 ± 9 SED 6
HD 146897 - 131.0 ±0.9 0.526 ± 0.009 6060 ± 70 1.32 ±0.03 10 ± 3 60 ± 10 ? 80 ± 20 ALMA USCO, 28
HD 152598 53 Her 29.65 ± 0.08 0.703 ± 0.003 7070 ± 70 200 ± 200 25 ±5 SED 21, 38
HD 156623 - 111 ± 1 1.11 ±0.01 8610 ±70 16 ± 2 10 ± 10 ? 150 ± 30 ALMA UCL, 28
HD 161868 ? Oph 30.0 ± 0.5 1.46 ±0.01 9190 ± 90 1.97 ± 0.03 300 ± 200 ALMA 6
HD 166348 - 13.20 ±0.01 -0.884 ± 0.003 4300 ± 90 0.72 ± 0.02 4000 ± 2000 20 ± 20 SED 12, 35
HD 169022 ? Sgr 43.9 ± 0.5 2.59 ± 0.02 9420 ± 70 3.7 ± 0.2 130 ± 30 120 ± 60 SED 5
HD 172555 - 28.3 ± 0.2 0.892 ± 0.006 7480 ± 70 1.71 ± 0.02 24 ± 3 15 ± 3 SED BPMG, 2
HD 179520 - 58.6 ± 0.2 0.605 ± 0.003 6880 ± 70 300 ± 200 15 ±3 SED 6
HD 181296 ? Tel 47.3 ± 0.4 1.33 ± 0.02 9400 ± 100 2.21 ± 0.03 24 ± 3 40 ± 10 SED BPMG, 2
HD 181327 - 48.1 ± 0.1 0.458 ± 0.003 6430 ± 70 1.41 ± 0.02 24 ± 3 73.3 ± 0.4 ? 89.3 ± 0.4 ALMA BPMG, 2
HD 182919 5 Vul 71.8 ± 0.5 1.50 ± 0.01 9830 ± 90 2.3 ± 0.1 200 ± 50 25 ± 7 SED 5
HD 183324 c Aql 60.6 ± 0.3 1.164 ± 0.009 8490 ± 70 500 ± 100 50 ± 40 ? 220 ± 90 Herschel 70 µm 6
HD 188228 ? Pav 31.4 ±0.3 1.51 ± 0.01 10400 ± 100 2.34 ± 0.02 45 ± 5 40 ± 30 ? 150 ± 60 Herschel 70 µm ARG, 39
HD 191089 - 50.1 ± 0.1 0.438 ± 0.003 6460 ± 70 24 ± 3 37 ±2 ? 53 ± 2 ALMA BPMG, 2
HD 191174 - 83.4 ± 0.3 1.27 ± 0.02 8800 ± 100 2.0 ± 0.1 390 ± 50 140 ± 40 SED 5
HD 191849 - 6.159 ± 0.002 -1.229 ± 0.003 3830 ± 70 900 ± 400 80 ± 50 SED 12, 35
HD 192425 ? Aql 47.9 ± 0.5 1.34 ±0.02 8900 ± 100 1.94 ± 0.04 400 ± 100 100 ± 30 ? 420 ± 60 Herschel 100 µm 6
HD 192758 - 66.4 ± 0.3 0.740 ± 0.006 6980 ± 70 1.62 ± 0.02 45 ±5 40 ± 40 ? 180 ±50 Herschel 100 µm ARG, 39
HD 193571 ?1 Sgr 68.3 ±0.8 1.44 ±0.01 9750 ± 70 2.2 ±0.1 200 ± 80 120 ±30 SED 6
HD 196544* l Del 59.4 ± 0.5 1.36 ± 0.01 9210 ± 70 100 ± 30 SED 5, 6, 13
HD 197481 AU Mic 9.720 ± 0.005 -1.020 ± 0.003 3600 ± 70 0.59 ± 0.03 24 ± 3 28.7 ± 0.3 ? 41.1 ± 0.3 ALMA BPMG, 2
HD 199260 - 21.27 ±0.07 0.294 ± 0.002 6280 ± 70 60 ± 10 SED 12, 32, 35
HD 202628 - 23.81 ± 0.03 -(7 ± 2) × 10-3 5780 ± 70 1100 ±400 130 ±3, 156 ± 3 ? 152 ± 3, 179 ± 3 ALMA 11
HD 205811 3 Peg 88.1 ± 0.8 1.40 ± 0.01 9320 ± 90 380 ± 80 30 ± 10 SED 6
HD 206860 HN Peg 18.12 ± 0.02 0.060 ± 0.002 6000 ± 70 400 ± 100 32 ± 8 SED 12, 32, 35
HD 207129 - 15.55 ± 0.02 0.090 ± 0.002 5920 ± 70 1.06 ±0.04 130 ±4 ? 170 ± 4 ALMA 5, 12, 14, 29, 32, 35
HD 209253 - 31.39 ±0.08 0.230 ± 0.003 6220 ± 70 600 ± 400 80 ± 20 SED 5, 32
HD 213398 ß PsA 43.1 ± 0.8 1.57 ± 0.02 9600 ± 100 180 ± 90 60 ± 30 SED 12, 35
HD 213617 39 Peg 53.5 ± 0.1 0.782 ± 0.004 6970 ± 70 700 ± 300 150 ± 30 SED 5, 33
HD 215766 t1 Aqr 109 ± 2 1.94 ±0.01 10560 ± 70 2.8 ±0.1 50 ± 20 SED 6
HD 216435 t1 Gru 32.98 ± 0.08 0.550 ± 0.002 6040 ± 70 5000 ± 2000 40 ± 30 ? 130 ±50 Herschel 70 µm 5, 32
HD 218340 - 56.1 ± 0.1 0.064 ± 0.007 5840 ± 70 1000 ± 1000 140 ± 40 SED Iso.
HD 218396 HR 8799 41.2 ± 0.1 0.755 ± 0.007 7270 ± 70 1.59 ± 0.02 ALMA COL, 2
HD 218511 - 14.83 ±0.01 -0.807 ± 0.006 4380 ± 70 0.69 ± 0.02 32 ± 8 SED 12, 35
HD 219482 - 20.45 ± 0.03 0.279 ± 0.002 6230 ± 70 400 ± 200 9±9 ? 30 ± 20 Herschel 70 µm 12, 32, 35
HD 219498 - 60 ± 200 -0.152 ± 0.005 5540 ± 70 34 ± 7 SED 5, 32
HD 220825 K Psc 48.9 ± 0.5 1.37 ± 0.02 9470 ± 90 2.34 ± 0.03 26 ± 7 SED ABDMG, 2
HD 221853 - 65.3 ± 0.2 0.594 ± 0.003 6730 ± 70 47 ± 9 SED 5
HD 222368 ? Psc 13.43 ± 0.06 0.522 ± 0.004 6230 ± 70 5000 ± 2000 40 ± 10 SED 29, 32
HD 223340 - 44.2 ±0.1 -0.352 ± 0.003 5240 ± 70 34 ± 6 SED ABDMG, 2
HD 223352* d Scl 42.7 ± 0.7 1.43 ± 0.01 9590 ± 80 2.26 ± 0.04 26 ± 8 SED ABDMG, 2
HIP 6276 - 35.30 ± 0.06 -0.284 ± 0.006 5300 ± 70 0.95 ± 0.02 22 ± 7 SED ABDMG, 2
MML 8 - 112.9 ± 0.4 -0.04 ± 0.01 4720 ± 70 15 ± 3 12 ± 3 SED LCC, 28
MML 28 - 117.5 ±0.6 -0.292 ± 0.005 4620 ± 70 1.00 ± 0.04 15 ± 3 20 ± 4 SED LCC, 28
MML 36 - 99.5 ± 0.8 -(4 ± 9) × 10-3 4980 ± 70 1.21 ± 0.03 16 ± 2 12 ± 3 SED UCL, 28
NLTT 54872 Fom. C 7.673 ± 0.005 -2.326 ± 0.003 3010 ± 70 0.22 ± 0.01 440 ± 40 ALMA 20
SAO 150676 Al Lep 73.0 ± 0.2 0.061 ± 0.004 5630 ± 70 1.20 ± 0.02 2±2 SED COL, 2

Notes. Uncertainties are 1σ. Systems where our stellar parameter estimates may be affected by close binarity are marked with asterisks (Sect. 2.1.2). The ‘Disc location and extent’ column describes the location and shape of the debris disc inner and outer edges: if the disc is resolved and fitted with an asymmetric model, then the column shows the inner edge pericentre, qi, inner edge apocentre, Qi, outer edge pericentre, qo, and outer edge apocentre, Qo, as ‘qi, Qiqo, Qo. Alternatively, if the disc is resolved and fitted with an axisymmetric model, then the column shows the disc inner edge, ai, and outer edge, ao, as ‘aiao'. Finally, if the disc location is estimated from SED data, then only the corrected blackbody radius is shown. We note that if multiple discs are present, then this column refers to the outermost disc. The ‘Disc data’ column gives the data source used to determine the debris disc properties (plus PACS wavelength for Herschel data). Age refs.’ show the references considered in our age assignment; targets with high probabilities of association membership have the association and age reference shown (we also use association ages for seven targets with lower membership probabilities, marked ), Tso.’ means our isochrone fit (performed for all targets but only quoted if no other valid age estimates were available), and literature references are as follows. (1) Aguilera-Gómez et al. (2018); (2) Bell et al. (2015); (3) Brandt & Huang (2015); (4) Casagrande et al. (2011); (5) Chen et al. (2014); (6) David & Hillenbrand (2015); (7) Dobbie et al. (2010); (8) Eiroa et al. (2013); (9) Elliott et al. (2016); (10) Esposito et al. (2020); (11) Faramaz et al. (2019); (12) Gáspár et al. (2013); (13) Gáspár et al. (2016); (14) Holland et al. (2017); (15) Jones et al. (2015); (16) Kains et al. (2011); (17) Lestrade et al. (2012); (18) MacGregor et al. (2018); (19) Mamajek & Hillenbrand (2008); (20) Mamajek et al. (2013); (21) Moór et al. (2009); (22) Moor et al. (2016); (23) Moro-Martín et al. (2015); (24) Murphy & Lawson (2015); (25) Nielsen et al. (2013); (26) Nielsen et al. (2019); (27) Nissen et al. (2020); (28) Pecaut & Mamajek (2016); (29) Ramirez et al. (2012); (30) Rieke et al. (2005); (31) Sierchio et al. (2014); (32) Stanford-Moore et al. (2020); (33) Stone et al. (2018); (34) Veyette & Muirhead (2018); (35) Vican (2012); (36) Weise et al. (2010); (37) Zuckerman et al. (2006); (38) Zuckerman et al. (2011); (39) Zuckerman (2019).

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