2019ApJ...871...63M


Query : 2019ApJ...871...63M

2019ApJ...871...63M - Astrophys. J., 871, 63-63 (2019/January-3)

How to constrain your M dwarf. II. The Mass-Luminosity-Metallicity relation from 0.075 to 0.70 solar masses.

MANN A.W., DUPUY T., KRAUS A.L., GAIDOS E., ANSDELL M., IRELAND M., RIZZUTO A.C., HUNG C.-L., DITTMANN J., FACTOR S., FEIDEN G., MARTINEZ R.A., RUIZ-RODRIGUEZ D. and THAO P.C.

Abstract (from CDS):

The mass-luminosity relation for late-type stars has long been a critical tool for estimating stellar masses. However, there is growing need for both a higher-precision relation and a better understanding of systematic effects (e.g., metallicity). Here we present an empirical relationship between MKS_ and M* spanning 0.075 M < M* < 0.70 M. The relation is derived from 62 nearby binaries, whose orbits we determine using a combination of Keck/NIRC2 imaging, archival adaptive optics data, and literature astrometry. From their orbital parameters, we determine the total mass of each system, with a precision better than 1% in the best cases. We use these total masses, in combination with resolved KS magnitudes and system parallaxes, to calibrate the MKS–M*_ relation. The resulting posteriors can be used to determine masses of single stars with a precision of 2%-3%, which we confirm by testing the relation on stars with individual dynamical masses from the literature. The precision is limited by scatter around the best-fit relation beyond measured M* uncertainties, perhaps driven by intrinsic variation in the MKS–M*_ relation or underestimated uncertainties in the input parallaxes. We find that the effect of [Fe/H] on the MKS–M*_ relation is likely negligible for metallicities in the solar neighborhood (0.0% ± 2.2% change in mass per dex change in [Fe/H]). This weak effect is consistent with predictions from the Dartmouth Stellar Evolution Database, but inconsistent with those from MESA Isochrones and Stellar Tracks (at 5σ). A sample of binaries with a wider range of abundances will be required to discern the importance of metallicity in extreme populations (e.g., in the Galactic halo or thick disk).

Abstract Copyright: © 2019. The American Astronomical Society. All rights reserved.

Journal keyword(s): binaries: visual - stars: late-type - stars: low-mass - stars: luminosity function, mass function

VizieR on-line data: <Available at CDS (J/ApJ/871/63): table1.dat table2.dat table5.dat>

Simbad objects: 85

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Number of rows : 85
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 G 158-50 ** 00 15 28.11090 -16 08 01.6303 14.49 13.187 11.483 10.273 8.711 M4V 130 0
2 LP 881-64 ** 00 24 44.1774908692 -27 08 25.263232614   17.18 15.338 13.502 11.403 M5.5/6Ve+M8.5Ve+M9/9.5V 139 0
3 LP 349-25 LM* 00 27 56.0057038615 +22 19 32.635434516   18.6   16.0   M8Ve 73 0
4 BD+66 34 ** 00 32 29.43301 +67 14 08.4138           M2V+M3V 119 1
5 BD+66 34B PM* 00 32 29.5866515154 +67 14 03.798281437   14.2 12.19 11.0   M3V 57 1
6 CD-68 47 ** 01 10 22.8808981176 -67 26 41.948658967 12.515 11.368 9.824 8.73 7.353 M2.5V 90 0
7 CD-33 514 ** 01 25 01.81160 -32 51 04.0285   11.26 10.129 9.717   K7Vk: 29 0
8 G 272-61 ** 01 39 01.452936 -17 57 02.04516   13.93 12.08 11.782 8.93 M5.5V+M6V 68 0
9 BD-18 359 SB* 02 05 04.8789108650 -17 36 52.735501484 12.86 11.705 10.189 9.141 7.851 M2.5 135 0
10 PM J02133+3648 ** 02 13 20.5910207915 +36 48 50.536769895     14.128 13.811   M4.5V 25 0
11 HD 15285 SB* 02 27 45.86150 +04 25 55.7489 11.398 10.101 8.673 7.797 6.972 M2V 136 0
12 BD+31 434 ** 02 28 46.48880 +32 15 34.1555   10.94   9.230   M0Vp 58 0
13 MCC 99 ** 03 09 30.8169328724 +45 43 59.026445203       9.720   M2.0V 73 0
14 LP 54-19 SB* 03 37 14.0817987048 +69 10 49.779443244   15.5   13.991   M3.8+M4.4 58 0
15 HD 23140 SB* 03 44 48.8302045033 +46 02 08.866292063   8.57   7.2   K0V 62 0
16 * 51 Tau SB* 04 18 23.2109961408 +21 34 45.188971896   5.945 5.631     F0V 260 0
17 LP 415-20 LM* 04 21 49.5764748384 +19 29 08.566062612           M7+M9.5 45 0
18 Cl Melotte 25 OpC 04 29 47.3 +16 56 53           ~ 3074 0
19 L 737-9 ** 05 08 35.0445036598 -18 10 19.388922597 12.893 11.809 10.302 9.161 7.661 M3.5V 94 0
20 2MASS J05221817-2507112 EB* 05 22 18.1714703592 -25 07 11.193636180   18.19   15.81 13.69 M4-5+M4-5 6 0
21 G 96-45 ** 05 33 19.1553936730 +44 48 58.940006766   13.907 12.253 11.801   M3V 48 0
22 GSC 06493-00315 EB* 05 42 49.1144333592 -25 59 47.445947592   13.580 13.114     ~ 12 0
23 Ross 614 Er* 06 29 23.3915175239 -02 48 48.803911021 13.942 12.764 11.071 9.77 8.05 M4.5V 349 0
24 G 250-29 ** 06 54 04.3730154767 +60 52 18.104163582       10.0   M3.0V 69 0
25 G 193-27 ** 07 03 55.7295368813 +52 42 06.567980132     13.29 11.94 10.14 M5.0V 57 0
26 Ross 54 SB* 07 04 17.7023584963 -10 30 31.576967626 13.9 12.822 11.303 10.187 8.738 M3.5V 56 0
27 LP 206-11 ** 07 11 11.518536 +43 29 56.66532   16.7 15.90 15.746 11.92 M5.5V 38 0
28 * alf Gem A SB* 07 34 35.862828 +31 53 17.79429     1.9     A1.5IV+ 389 0
29 * alf Gem B SB* 07 34 36.100452 +31 53 18.57117     3.0     kA0hA2:mA1IVs 290 1
30 G 89-32 ** 07 36 25.118208 +07 04 43.13928   14.99 13.24 12.78   M4.5V 64 0
31 LSPM J0746+2000 BD* 07 46 42.50553 +20 00 31.9757       17.9 15.034 L0+L1.5 184 1
32 BD-13 2439 ** 08 13 08.49769 -13 55 01.5165 11.999 10.785 9.374 8.5 7.658 M0V 96 0
33 V* CU Cnc SB* 08 31 37.5741841080 +19 23 39.398029332   12.83 11.809 11.592   M5Ve 221 0
34 BD+67 552 ** 08 36 25.4659696636 +67 17 41.782633862   11.153   8.4   M0.5V 104 0
35 Cl* NGC 2682 FBC 2136 EB* 08 50 32.9548840200 +12 08 23.631964152   17.51 16.35 15.36 13.61 M3.2 16 0
36 BD+12 1944 ** 08 57 04.6752499168 +11 38 48.820583009 13.373 12.119 10.582 9.598 8.499 M1V 76 0
37 G 161-7 ** 09 15 36.402000 -10 35 47.22900   15.643 13.804 13.473 10.42 M5.0V 45 0
38 HD 79969 BY* 09 17 53.45577 +28 33 37.8633   8.22 7.21     K3V 191 0
39 BD-12 2918 ** 09 31 19.41603 -13 29 18.9355 12.734 11.568 10.067 9.000 7.682 M3V 143 0
40 MCC 568 ** 10 12 04.6719766322 -02 41 05.170732851 13.415 12.205 10.629 9.581 8.303 M2.5V 105 0
41 2MASS J10170754+1308398 BD* 10 17 07.5535371936 +13 08 39.784300548         17.418 L1.5+L3 31 0
42 LP 213-68 ** 10 47 13.7778721616 +40 26 49.263789176   21.2   19.1   M8+L0 37 0
43 HD 97233 PM* 11 11 33.1488855786 -14 59 28.926586491 11.394 10.26 9.038 8.285 7.607 K5Vk: 87 1
44 FBS 1109+767 EB* 11 12 42.3396641760 +76 26 56.387535288   16.1   14.8   M4V 52 0
45 Wolf 414 ** 12 28 57.5928686771 +08 25 31.147431123 14.828 13.618 12.047 10.862 9.329 M4V 76 0
46 Wolf 424 ** 12 33 17.361480 +09 01 15.79224 15.398 14.313 12.467 10.937 8.988 M5.5V 321 0
47 BD+13 2618 Er* 13 00 46.5566863405 +12 22 32.677229903 12.314 11.233 9.750 8.785 7.653 M0V 348 1
48 FBS 1345+796 EB* 13 45 34.8710774664 +79 23 48.290145432     13.363 13.074   M4/5 43 0
49 V* GU Boo EB* 15 21 54.8243257728 +33 56 09.067285032     13.11     M0/M1.5 94 0
50 G 179-55 EB* 15 47 27.4119372390 +45 07 51.345516619   15.20 13.61 13.246   M4Ve 47 0
51 BD+11 2874 SB* 15 52 08.2371586781 +10 52 28.079991884 12.035 10.779 9.363 8.489 7.672 K5V 77 0
52 G 202-45 SB* 16 24 09.3137145795 +48 21 11.107573476   12.099       M3.0V 182 1
53 Wolf 629 PM* 16 55 25.2222453644 -08 19 21.296969167 14.691 13.436 11.759 10.574 9.044 M3.5V 219 0
54 HD 152751 SB* 16 55 28.7575690 -08 20 10.787849 11.647 10.593 9.023 7.937 6.565 M3.5Ve 523 1
55 VB 8 LM* 16 55 35.2557374336 -08 23 40.753073075   18.7 16.916 14.566 12.24 M7Ve 430 0
56 G 139-12 ** 17 07 40.854216 +07 22 06.73608 17.34 15.2   13.822   M5V 41 0
57 G 19-15 ** 17 11 52.25370 -01 51 06.3227 14.28 13.005 11.393 10.286 8.877 M3V 71 0
58 HD 155876 SB* 17 12 07.91174 +45 39 57.2157   10.250 9.523 9.3   M3V 209 0
59 HD 156384 ** 17 18 57.16483 -34 59 23.1416 7.80 6.93 5.89 4.97 4.38 K3V+K5V 165 0
60 HD 156384C PM* 17 18 58.8272997802 -34 59 48.612673382 12.96 11.79 10.22 10.05 8.82 M1.5V 221 1
61 LP 388-55 LM* 17 35 12.9696957784 +26 34 47.055204223   20.1   18.1   M7.5+L0 21 0
62 G 140-9 ** 17 43 00.8026674138 +05 47 21.839716094 13.4 12.197 10.657 10.231 8.619 M0V 50 0
63 G 207-16 ** 19 07 42.98736 +32 32 41.7012   12.97 11.26 10.1 8.65 M3V 76 0
64 Wolf 1062 ** 19 12 14.6156897487 +02 53 11.438190161 13.722 12.663 11.143 10.016 8.534 M3.5V 144 0
65 Kepler-16 SB* 19 16 18.1758378936 +51 45 26.782726104   12.1   11.90   K7V 243 1
66 HD 184467 SB* 19 31 07.9663576561 +58 35 09.604190291       7.36   K2V 162 0
67 HD 186922 SB* 19 39 06.3740422 +76 25 19.288153   8.96   7.5   K2 69 0
68 G 208-44 Er* 19 53 54.4821159649 +44 24 51.341564299   15.31 13.126 13.083 9.78 M5.5Ve 207 1
69 G 208-45 LM* 19 53 55.1405033909 +44 24 54.147256052   15.97 13.99 14.3 10.27 M6V 190 0
70 G 24-16 Er* 20 29 48.3179167836 +09 41 20.590506834       12.728   M4.5V 152 0
71 HD 195564 PM* 20 32 23.6946897472 -09 51 12.184220381   6.34 5.65     G2.5IV 157 0
72 HD 352860 ** 20 44 21.9571027959 +19 45 00.663944345 12.971 11.76 10.304 9.386 8.432 K6V 74 0
73 Wolf 922 ** 21 31 18.5690289199 -09 47 26.482273373 14.901 13.670 12.006 10.708 9.038 M4.5V 159 0
74 2MASS J21402931+1625183 ** 21 40 29.3219106816 +16 25 18.097174704         15.36 M8+M9.5 32 0
75 Ross 265 ** 22 01 49.04542 +16 28 02.8446 13.378 12.175 10.653 9.61 8.334 M2.5V 68 0
76 2MASSW J2206228-204705 SB* 22 06 22.8297746064 -20 47 06.597790152     19.788 17.452 14.877 M8.0V 45 0
77 HD 239960 ** 22 27 59.47299 +57 41 45.2325           M3 274 0
78 BD+38 4818 SB* 22 37 29.9190772308 +39 22 51.690579824   11.16   9.094   M0.0V 59 0
79 V* EZ Aqr Er* 22 38 33.576000 -15 17 59.75700 15.762 14.33 12.38 12.12 8.677 M5V 304 1
80 * 51 Peg b Pl 22 57 27.9804852576 +20 46 07.797040104           ~ 666 1
81 MCC 860 ** 23 16 39.72073 +19 37 17.1038   12.62   10.648   M2V 53 0
82 BD+00 5017 ** 23 35 00.2767437606 +01 36 19.434711493 12.082 10.893 9.546 8.703 7.879 K7V 152 0
83 G 273-130 ** 23 45 31.279776 -16 10 19.40016   15.7   14.161   M5+M5 39 0
84 BD+45 4378 SB* 23 58 43.4881610546 +46 43 44.737257440   11.02 9.78 9.25   K7V 80 0
85 NAME Local Bubble ISM ~ ~           ~ 898 0

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