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Table 5.

PL relations of the form M = α + β log P.

α β N Constraints LMC DM (mag)
FU, 2.7 < P(d) < 35, |GOF| <8, ɛi < 0.001, δPL applied.
1 −1.919 ± 0.119 −2.386 ± 0.138 194 V, GDR2, ZPoff = 0 mas
2 −1.875 ± 0.118 −2.305 ± 0.136 194 V, GDR2, ZPoff = −0.029 mas
3 −1.848 ± 0.119 −2.260 ± 0.135 194 V, GDR2, ZPoff = −0.046 mas
4 −2.912 ± 0.058 −3.154 ± 0.070 194 K, GDR2, ZPoff = 0 mas
5 −2.866 ± 0.057 −3.071 ± 0.068 194 K, GDR2, ZPoff = −0.029 mas
6 −2.839 ± 0.056 −3.028 ± 0.067 194 K, GDR2, ZPoff = −0.046 mas
7 −3.047 ± 0.055 −3.252 ± 0.066 194 WVK, GDR2, ZPoff = 0 mas
8 −2.999 ± 0.053 −3.170 ± 0.063 194 WVK, GDR2, ZPoff = −0.029 mas
9 −2.972 ± 0.052 −3.126 ± 0.063 194 WVK, GDR2, ZPoff = −0.046 mas
10 −1.917 ± 0.118 −2.351 ± 0.137 205 V, GDR2+Ext, ZPoff = 0 mas
11 −2.908 ± 0.057 −3.109 ± 0.068 205 K, GDR2+Ext, ZPoff = 0 mas
12 −3.041 ± 0.053 −3.207 ± 0.063 205 WVK, GDR2+Ext, ZPoff = 0 mas
20 −1.728 ± 0.029 −2.629 fixed 194 V, GDR2, ZPoff = 0 mas
21 −1.619 ± 0.029 −2.629 fixed 194 V, GDR2, ZPoff = −0.029 mas
22 −1.557 ± 0.029 −2.629 fixed 194 V, GDR2, ZPoff = −0.046 mas
23 −1.690 ± 0.029 −2.678 fixed 194 V, GDR2, ZPoff = 0 mas
24 −1.581 ± 0.030 −2.678 fixed 194 V, GDR2, ZPoff = −0.029 mas
25 −1.519 ± 0.030 −2.678 fixed 194 V, GDR2, ZPoff = −0.046 mas
26 −1.589 ± 0.030 −2.810 fixed 194 V, GDR2, ZPoff = 0 mas 18.761 ± 0.030
27 −1.480 ± 0.030 −2.810 fixed 194 V, GDR2, ZPoff = −0.029 mas 18.650
28 −1.418 ± 0.030 −2.810 fixed 194 V, GDR2, ZPoff = −0.046 mas 18.590
29 −1.321 ± 0.030 −2.810 fixed 194 V, GDR2, ZPoff = −0.074 mas 18.493
30 −1.233 ± 0.030 −2.810 fixed 194 V, GDR2, ZPoff = −0.100 mas 18.405
40 −2.879 ± 0.014 −3.194 fixed 194 K, GDR2, ZPoff = 0 mas 18.875 ± 0.017
41 −2.769 ± 0.014 −3.194 fixed 194 K, GDR2, ZPoff = −0.029 mas 18.765
42 −2.707 ± 0.014 −3.194 fixed 194 K, GDR2, ZPoff = −0.046 mas 18.703
43 −2.827 ± 0.014 −3.260 fixed 194 K, GDR2, ZPoff = 0 mas 18.880 ± 0.014
44 −2.717 ± 0.014 −3.260 fixed 194 K, GDR2, ZPoff = −0.029 mas 18.770
45 −2.655 ± 0.014 −3.260 fixed 194 K, GDR2, ZPoff = −0.046 mas 18.708
46 −2.469 ± 0.013 −3.260 fixed 194 K, GDR2, ZPoff = −0.100 mas 18.522
47 −2.800 ± 0.014 −3.295 fixed 194 K, GDR2, ZPoff = 0 mas 18.870 ± 0.022
48 −2.690 ± 0.014 −3.295 fixed 194 K, GDR2, ZPoff = −0.029 mas 18.760
49 −2.628 ± 0.014 −3.295 fixed 194 K, GDR2, ZPoff = −0.046 mas 18.698
50 −2.442 ± 0.013 −3.295 fixed 194 K, GDR2, ZPoff = −0.100 mas 18.512
51 −2.377 ± 0.013 −3.295 fixed 194 K, GDR2, ZPoff = −0.120 mas 18.447
52 −2.745 ± 0.014 −3.365 fixed 194 K, GDR2, ZPoff = 0 mas
52 −2.636 ± 0.014 −3.365 fixed 194 K, GDR2, ZPoff = −0.029 mas
53 −2.574 ± 0.014 −3.365 fixed 194 K, GDR2, ZPoff = −0.046 mas
60 −2.997 ± 0.013 −3.314 fixed 194 WVK, GDR2, ZPoff = 0 mas
61 −2.887 ± 0.013 −3.314 fixed 194 WVK, GDR2, ZPoff = −0.029 mas
62 −2.825 ± 0.013 −3.314 fixed 194 WVK, GDR2, ZPoff = −0.046 mas
63 −2.793 ± 0.013 −3.314 fixed 194 WVK, GDR2, ZPoff = −0.055 mas
64 −2.988 ± 0.013 −3.325 fixed 194 WVK, GDR2, ZPoff = 0 mas 18.858 ± 0.018
65 −2.878 ± 0.013 −3.325 fixed 194 WVK, GDR2, ZPoff = −0.029 mas 18.748
66 −2.816 ± 0.013 −3.325 fixed 194 WVK, GDR2, ZPoff = −0.046 mas 18.696
67 −2.784 ± 0.012 −3.325 fixed 194 WVK, GDR2, ZPoff = −0.055 mas 18.654
68 −2.714 ± 0.012 −3.325 fixed 194 WVK, GDR2, ZPoff = −0.075 mas 18.584
69 −2.630 ± 0.012 −3.325 fixed 194 WVK, GDR2, ZPoff = −0.100 mas 18.500
70 −1.544 ± 0.029 −2.629 fixed 205 V, GDR2+Ext, ZPoff = −0.046 mas
71 −1.506 ± 0.030 −2.678 fixed 205 V, GDR2+Ext, ZPoff = −0.046 mas
72 −1.404 ± 0.030 −2.810 fixed 205 V, GDR2+Ext, ZPoff = −0.046 mas 18.576 ± 0.030
73 −2.684 ± 0.013 −3.194 fixed 205 K, GDR2+Ext, ZPoff = −0.046 mas
74 −2.632 ± 0.013 −3.260 fixed 205 K, GDR2+Ext, ZPoff = −0.046 mas 18.685 ± 0.013
75 −2.604 ± 0.013 −3.295 fixed 205 K, GDR2+Ext, ZPoff = −0.046 mas
76 −2.550 ± 0.013 −3.365 fixed 205 K, GDR2+Ext, ZPoff = −0.046 mas
77 −2.800 ± 0.012 −3.314 fixed 205 WVK, GDR2+Ext, ZPoff = −0.046 mas
78 −2.792 ± 0.012 −3.325 fixed 205 WVK, GDR2+Ext, ZPoff = −0.046 mas 18.662 ± 0.018

Notes. N is the number of stars in the solution.

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