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Table C.2

Physical and dynamical properties of the double-dip and cliff objects with well characterised CO band.

Prov. Des. Name Diameter pV Tq TJWS T TQ Q Dynamical
(km) (K) (K) (K) (au) class
Double-dip

1999 DE9 311.032.0+29.0${311.0_{ - 32.0}^{ + 29.0}}$ 0.16 48.1 42.7 30.9 78 5:2 Res
2000 OK67 164.045.0+33.0${164.0_{ - 45.0}^{ + 33.0}}$ 0.17 43.1 43.1 37.1 54 HC
2001 FZ173 212 0.12 48.2 47.1 23.5 136 Scat
2002 UX25 697.224.5+23.0${697.2_{ - 24.5}^{ + 23.0}}$ 0.11 45.4 43.5 39.3 49 HC
2003 FY128 460.021+21.0${460.0_{ - 21}^{ + 21.0}}$ 0.08 45.4 43.2 35.3 61 Detached
2003 MW12 Varda 792.084.0+91.0$792.0_{ - 84.0}^{ + 91.0}$ 0.10 44.0 40.6 38.0 52 15:8 Res
2003 UY413 293 0.14 44.7 42.0 36.0 58 HC
2004 TY364 512.040.0+37.0$512.0_{ - 40.0}^{ + 37.0}$ 0.11 45.5 44.2 42.7 42 HC
2004 UX10 398.139.3+32.6$398.1_{ - 39.3}^{ + 32.6}$ 0.14 44.6 43.6 42.8 41 HC
2004 XA192 339.095.0+120.0$339.0_{ - 95.0}^{ + 120.0}$ 0.26 45.0 45.0 35.0 59 Detached
2005 QU182 41673+73$416_{ - 73}^{ + 73}$ 0.33 43.4 35.6 19.1 192 Scat
2005 RN43 679.073.0+55.0$679.0_{ - 73.0}^{ + 55.0}$ 0.11 43.2 43.2 41.9 43 HC
2005 TB190 464.062+62$464.0_{ - 62}^{ + 62}$ 0.15 40.2 40.2 26.4 108 Detached
2007 UK126 G!kún||’hòmdímà 599.077+77$599.0_{ - 77}^{ + 77}$ 0.17 44.4 42.6 26.0 111 Detached
2008 NW4 297 0.10 45.6 45.5 37.3 54 HC
2010 EK139 Dziewanna 433.064.0+63.0$433.0_{ - 64.0}^{ + 63.0}$ 0.30 46.7 45.1 25.9 105 7:2 Res
2010 ER65 341 0.12 43.4 42.4 22.2 153 Detached
2010 ET65 338 0.12 43.6 43.4 30.0 84 Detached
2010 VW11 304 0.13 45.4 45.2 33.9 66 Detached
2014 LV28 268 0.13 46.9 46.0 26.7 105 Scat
2014 YF50 315 0.12 46.0 45.9 24.9 123 13:2 Res

2004 PG115* 334 0.10 45.6 43.8 22.7 147 Scat
Cliff

1995 TL8 244.063.0+82.0$244.0_{ - 63.0}^{ + 82.0}$ 0.23 42.6 39.6 33.2 66 HC
1997 CS29 Sila-Numan 343 0.09 41.9 41.9 41.6 44 CC
1999 OX3 135.012.0+13.0$135.0_{ - 12.0}^{ + 13.0}$ 0.08 65.8 65.8 40.0 48 Scat
1999 RZ253 Borasisi 163.066.0+32.0$163.0_{ - 66.0}^{ + 32.0}$ 0.24 42.5 41.3 38.9 48 CC
1999 TC36 Lempo 393.126.8+25.2$393.1_{ - 26.8}^{ + 25.2}$ 0.08 50.0 49.7 39.5 49 3:2 Res
2002 TC302 584.188.0+105.6$584.1_{ - 88.0}^{ + 105.6}$ 0.12 43.9 41.7 32.4 72 5:2 Res
2004 PF115 468.249.1+38.6$468.2_{ - 49.1}^{ + 38.6}$ 0.12 45.2 42.6 42.6 42 HC
2007 JF43 388 0.08 48.8 45.7 40.4 47 3:2 Res
2007 TY430 -A Mors <116 >0.12 <51.2 <51.0 <38.8 50 3:2 Res
2010 VZ98 367 0.12 46.8 46.7 16.3 285 Scat

2000 EB173* Huya 458 0.08 51.7 51.3 39 50 3:2 Res

Notes. Diameters with uncertainties are taken from the "TNOs Are Cool" survey (Müller et al. 2020). Objects with diameters without uncertainties do not have measured albedos, average albedo from their dynamical class was used with published H-magnitudes to estimate a diameter. Equilibrium temperature at perihelion (q), JWST observation heliocentric distance (JWST) and aphelion (Q) are calculated with Eq. C.1. The 3 distances were taken from JPL Horizons and Q is here given rounded to unity. Dynamical classes are according to Volk & Van Laerhoven (2024).

(*) 2004 PG115 and Huya (2000 EB173) are classified in the other spectral group contrary to their CO2 behaviour as explained in Sect. 2.1.

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