2002ApJ...564..736P


Query : 2002ApJ...564..736P

2002ApJ...564..736P - Astrophys. J., 564, 736-761 (2002/January-2)

On the distribution of orbital poles of Milky Way satellites.

PALMA C., MAJEWSKI S.R. and JOHNSTON K.V.

Abstract (from CDS):

In numerous studies of the outer Galactic halo some evidence for accretion has been found. If the outer halo did form in part or wholly through merger events, we might expect to find coherent streams of stars and globular clusters following orbits similar to those of their parent objects, which are assumed to be present or former Milky Way dwarf satellite galaxies. We present a study of this phenomenon by assessing the likelihood of potential descendant ``dynamical families'' in the outer halo. We conduct two analyses: one that involves a statistical analysis of the spatial distribution of all known Galactic dwarf satellite galaxies (DSGs) and globular clusters, and a second, more specific analysis of those globular clusters and DSGs for which full phase space dynamical data exist. In both cases our methodology is appropriate only to members of descendant dynamical families that retain nearly aligned orbital poles today. Since the Sagittarius dwarf (Sgr) is considered a paradigm for the type of merger/tidal interaction event for which we are searching, we also undertake a case study of the Sgr system and identify several globular clusters that may be members of its extended dynamical family. In our first analysis, the distribution of possible orbital poles for the entire sample of outer (Rgc>8 kpc) halo globular clusters is tested for statistically significant associations among globular clusters and DSGs. Our methodology for identifying possible associations is similar to that used by Lynden-Bell & Lynden-Bell, but we put the associations on a more statistical foundation. Moreover, we study the degree of possible dynamical clustering among various interesting ensembles of globular clusters and satellite galaxies. Among the ensembles studied, we find the globular cluster subpopulation with the highest statistical likelihood of association with one or more of the Galactic DSGs to be the distant, outer halo (Rgc>25 kpc), second-parameter globular clusters. The results of our orbital pole analysis are supported by the great circle cell count methodology of Johnston, Hernquist, & Bolte. The space motions of the clusters Pal 4, NGC 6229, NGC 7006, and Pyxis are predicted to be among those most likely to show the clusters to be following stream orbits, since these clusters are responsible for the majority of the statistical significance of the association between outer halo, second-parameter globular clusters and the Milky Way DSGs. In our second analysis, we study the orbits of the 41 globular clusters and six Milky Way-bound DSGs having measured proper motions to look for objects with both coplanar orbits and similar angular momenta. Unfortunately, the majority of globular clusters with measured proper motions are inner halo clusters that are less likely to retain memory of their original orbit. Although four potential globular cluster/DSG associations are found, we believe three of these associations involving inner halo clusters to be coincidental. While the present sample of objects with complete dynamical data is small and does not include many of the globular clusters that are more likely to have been captured by the Milky Way, the methodology we adopt will become increasingly powerful as more proper motions are measured for distant Galactic satellites and globular clusters, and especially as results from the Space Interferometry Mission (SIM) become available.

Abstract Copyright:

Journal keyword(s): Galaxies: Kinematics and Dynamics - Galaxy: Halo - Galaxy: Structure - Galaxy: Globular Clusters: General - Galaxies: Local Group

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 NGC 104 GlC 00 24 05.359 -72 04 53.20     4.09     ~ 3917 0
2 NAME SMC G 00 52 38.0 -72 48 01   2.79 2.2     ~ 11149 1
3 NGC 288 GlC 00 52 45.24 -26 34 57.4   10 8.13     ~ 1042 0
4 NAME Sculptor Dwarf Galaxy G 01 00 09.4 -33 42 32   9.79 8.6 8.81   ~ 1359 4
5 NGC 362 GlC 01 03 14.26 -70 50 55.6     6.58     ~ 1085 0
6 NAME Phoenix Dwarf Galaxy Sy1 01 51 06.3 -44 26 41   13.48 13.2 12.69   ~ 533 2
7 NAME Fornax Dwarf Spheroidal G 02 39 59.3 -34 26 57   9.02 7.4     ~ 1743 1
8 NGC 1261 GlC 03 12 16.21 -55 12 58.4     8.63     ~ 520 0
9 Cl Pal 1 GlC 03 33 20.04 +79 34 51.8   17.2       ~ 243 1
10 NAME E 1 GlC 03 55 02.5 -49 36 52           ~ 208 0
11 NAME Eridanus Star Cluster GlC 04 24 44.5 -21 11 13           ~ 178 1
12 NGC 1851 GlC 05 14 06.76 -40 02 47.6           ~ 1430 0
13 NAME LMC G 05 23 34.6 -69 45 22     0.4     ~ 17434 0
14 M 79 GlC 05 24 10.59 -24 31 27.3     8.16     ~ 817 0
15 NAME Carina dSph G 06 41 36.7 -50 57 58   22.14 11.0 19.47   ~ 1125 0
16 NGC 2298 GlC 06 48 59.41 -36 00 19.1     8.89     ~ 497 0
17 C 0653-132 OpC 06 55 55 -13 16.8           ~ 8 0
18 NGC 2419 GlC 07 38 08.51 +38 52 54.9     10.05     ~ 932 0
19 NAME PYX GLOBULAR CL GlC 09 07 57.80 -37 13 17.0           ~ 107 0
20 NGC 2808 GlC 09 12 03.10 -64 51 48.6           ~ 1420 0
21 NAME Sextans C GlC 10 05 30.96 +00 04 15.4   15.5 13.9     ~ 328 1
22 Z 64-73 G 10 08 28.12 +12 18 23.4   11.3 10.0     ~ 1208 1
23 NAME Sextans dSph G 10 13 02.9 -01 36 53   12 10.4     ~ 854 0
24 NGC 3201 GlC 10 17 36.82 -46 24 44.9           ~ 885 0
25 Z 126-111 G 11 13 28.13 +22 09 10.1   12.9 12.0     ~ 840 0
26 GCl 17 GlC 11 29 16.80 +28 58 25.0   14.4       ~ 354 1
27 NGC 4147 GlC 12 10 06.149 +18 32 31.78   11.45 10.74     ~ 573 0
28 C 1235-509 GlC 12 38 40.20 -51 09 01.0           ~ 377 0
29 M 68 GlC 12 39 27.98 -26 44 38.6     7.96     ~ 997 0
30 M 53 GlC 13 12 55.25 +18 10 05.4     7.79     ~ 836 0
31 NGC 5053 GlC 13 16 27.09 +17 42 00.9     9.96     ~ 620 0
32 NGC 5139 GlC 13 26 47.28 -47 28 46.1           ~ 3427 0
33 M 3 GlC 13 42 11.62 +28 22 38.2     6.39     ~ 2479 0
34 NGC 5286 GlC 13 46 26.81 -51 22 27.3           ~ 443 0
35 NGC 5466 GlC 14 05 27.29 +28 32 04.0     9.70     ~ 828 0
36 NGC 5694 GlC 14 39 36.52 -26 32 18.0           ~ 301 0
37 IC 4499 GlC 15 00 18.57 -82 12 49.6     8.56     ~ 351 0
38 NGC 5824 GlC 15 03 58.612 -33 04 06.70   10.28 9.56     ~ 408 0
39 NAME UMi Galaxy G 15 09 08.0 +67 13 21   13.60 10.6     ~ 1360 0
40 NAME Serpens Dwarf GlC 15 16 05.30 -00 06 41.0   15.1       ~ 734 1
41 NGC 5897 GlC 15 17 24.40 -21 00 36.4   10.16 8.52     ~ 389 0
42 M 5 GlC 15 18 33.22 +02 04 51.7     5.95     ~ 1978 0
43 GCl 38 GlC 16 10 59.00 +14 57 42.0           ~ 368 0
44 M 80 GlC 16 17 02.41 -22 58 33.9           ~ 716 0
45 M 4 GlC 16 23 35.22 -26 31 32.7           ~ 1850 0
46 NGC 6101 GlC 16 25 48.12 -72 12 07.9           ~ 294 0
47 NGC 6144 GlC 16 27 13.86 -26 01 24.6           ~ 243 0
48 M 107 GlC 16 32 31.86 -13 03 13.6           ~ 786 0
49 M 13 GlC 16 41 41.634 +36 27 40.75     5.8     ~ 2193 0
50 NGC 6229 GlC 16 46 58.641 +47 31 36.38   9.38 9.86     ~ 366 0
51 M 12 GlC 16 47 14.18 -01 56 54.7     6.07     ~ 677 0
52 M 10 GlC 16 57 09.05 -04 06 01.1     4.98     ~ 789 0
53 GCl 50 GlC 16 59 51.1 -00 32 00   15.70       ~ 200 1
54 M 92 GlC 17 17 07.39 +43 08 09.4     6.52     ~ 2116 0
55 NAME Dra dSph G 17 20 14.335 +57 55 16.39   12.40 10.6     ~ 1331 1
56 NGC 6356 GlC 17 23 34.99 -17 48 46.9   10.01 7.42     ~ 350 1
57 IC 1257 Bz? 17 27 06.00 -07 05 00.0           ~ 87 0
58 NGC 6362 GlC 17 31 54.99 -67 02 54.0           ~ 585 0
59 NGC 6397 GlC 17 40 42.09 -53 40 27.6     5.17     ~ 1976 0
60 NGC 6426 GlC 17 44 54.71 +03 10 12.5           ~ 222 0
61 NGC 6522 GlC 18 03 34.08 -30 02 02.3           ~ 524 0
62 NGC 6584 GlC 18 18 37.60 -52 12 56.8     8.17     ~ 288 0
63 M 28 GlC 18 24 32.89 -24 52 11.4           ~ 770 0
64 M 22 GlC 18 36 23.94 -23 54 17.1           ~ 1379 0
65 NGC 6712 GlC 18 53 04.32 -08 42 21.5           ~ 519 0
66 M 54 GlC 18 55 03.33 -30 28 47.5           ~ 1069 0
67 NAME SDG G 18 55 19.0 -30 32 43   4.5 3.6     ~ 2187 2
68 NGC 6752 GlC 19 10 52.11 -59 59 04.4           ~ 2001 0
69 M 56 GlC 19 16 35.57 +30 11 00.5           ~ 422 0
70 Cl Terzan 7 GlC 19 17 43.92 -34 39 27.8           ~ 428 0
71 Cl Arp 2 GlC 19 28 44.11 -30 21 20.3     12.41     ~ 354 0
72 M 55 GlC 19 39 59.71 -30 57 53.1     6.49     ~ 854 0
73 Cl Terzan 8 GlC 19 41 44.41 -33 59 58.1     11.54     ~ 321 0
74 M 71 GlC 19 53 46.49 +18 46 45.1           ~ 1128 0
75 M 75 GlC 20 06 04.841 -21 55 20.14     8.26     ~ 366 0
76 NGC 6934 GlC 20 34 11.37 +07 24 16.1           ~ 422 0
77 M 72 GlC 20 53 27.70 -12 32 14.3     8.96     ~ 430 0
78 NGC 7006 GlC 21 01 29.465 +16 11 16.49     10.46     ~ 532 0
79 M 15 GlC 21 29 58.33 +12 10 01.2           ~ 3140 0
80 M 2 GlC 21 33 27.02 -00 49 23.7     6.25     ~ 1030 1
81 M 30 GlC 21 40 22.12 -23 10 47.5     7.10     ~ 1049 0
82 Cl Pal 12 GlC 21 46 38.84 -21 15 09.4     11.89     ~ 516 0
83 GCl 124 GlC 23 06 44.48 +12 46 19.2   15.6       ~ 277 1
84 NGC 7492 GlC 23 08 26.68 -15 36 41.3     10.48     ~ 301 0
85 NAME Local Group GrG ~ ~           ~ 8391 0

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