2008ApJ...684.1075M


Query : 2008ApJ...684.1075M

2008ApJ...684.1075M - Astrophys. J., 684, 1075-1092 (2008/September-2)

A comprehensive maximum likelihood analysis of the structural properties of faint Milky Way satellites.

MARTIN N.F., DE JONG J.T.A. and RIX H.-W.

Abstract (from CDS):

We derive the structural parameters of the recently discovered very low luminosity Milky Way satellites through a maximum likelihood algorithm applied to SDSS data. For each satellite, even when only a few tens of stars are available down to the SDSS flux limit, the algorithm yields robust estimates and errors for the centroid, position angle, ellipticity, exponential half-light radius and number of member stars (within the SDSS). This latter parameter is then used in conjunction with stellar population models of the satellites to derive their absolute magnitudes and stellar masses, accounting for color-magnitude diagram shot noise. Most parameters are in good agreement with previous determinations, but we now properly account for parameter covariances. However, we find that faint satellites are somewhat more elliptical than initially thought, and ascribe this effect to the previous use of smoothed maps, which can be dominated by the smoothing (round) kernel. As a result, the faintest half of the Milky Way dwarf galaxies (MV≳-7.5) is significantly (4 σ) flatter (ε=0.47±0.03) than its brightest half (MV≲-7.5, ε=0.32±0.02). From our best models, we also investigate whether the seemingly distorted shape of the satellites, often taken to be a sign of tidal distortion, can be quantified. We find that, except for tentative evidence of distortion in Canes Venatici I and Ursa Major II, these can be completely accounted for by Poisson scatter in the sparsely sampled systems. We consider three scenarios that could explain the rather elongated shape of faint satellites: rotation supported systems, stars following the shape of more triaxial dark matter subhalos, or elongation due to tidal interaction with the Milky Way. Although none of these is entirely satisfactory, the last one appears the least problematic, but obviously warrants much deeper observations to track evidence of such tidal interaction.

Abstract Copyright:

Journal keyword(s): Galaxies: Dwarf - Galaxies: Local Group

Simbad objects: 28

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Number of rows : 28
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 NAME SDSS J0814+5105 Gl? 08 14.0 +51 05           ~ 2 0
2 NAME SDSS J0821+5608 Gl? 08 21.0 +56 08           ~ 2 0
3 NAME UMa II Galaxy G 08 51 30.0 +63 07 48     13.3     ~ 374 0
4 NAME Leo T G 09 34 53.4 +17 03 05     15.1     ~ 388 0
5 V* Y Dra Mi* 09 42 22.7374140072 +77 51 07.342357140   11.41 10.42     M5e 57 0
6 NAME SDSS J1000+5730 Dwarf G G 10 00.0 +57 30           ~ 4 0
7 NAME Segue 1 G 10 07 03.2 +16 04 25     15.3     ~ 465 1
8 Z 64-73 G 10 08 28.12 +12 18 23.4   11.3 10.0     ~ 1207 1
9 NAME UMa I Galaxy G 10 34 52.80 +51 55 12.0     14.4     ~ 328 1
10 NAME Willman 1 G 10 49 21.0 +51 03 00     15.2     ~ 320 0
11 NAME SDSS J1058+2843 Gl? 10 58.0 +28 43           ~ 6 0
12 [KBE2008] Candidate Y ? 11 12 35 +43 26.4           ~ 2 0
13 Z 126-111 G 11 13 28.13 +22 09 10.1   12.9 12.0     ~ 840 0
14 NAME Leo IV Dwarf Galaxy G 11 32 57.0 -00 32 00     15.1     ~ 383 1
15 [KBE2008] Candidate Z ? 11 56 35 +21 02.9           ~ 2 0
16 NAME Coma Dwarf Galaxy G 12 26 59.0 +23 54 15     14.1     ~ 452 1
17 [KBE2008] Candidate X ? 12 53 31 +46 24.9           ~ 2 0
18 NAME CVn II dSph G 12 57 09.6 +34 19 12     16.1     ~ 263 2
19 NAME CVn I dSph G 13 28 03.5 +33 33 21     13.1     ~ 326 1
20 NAME SDSS J1329+2841 Dwarf G G 13 29 13.0 +28 41 27           ~ 4 0
21 NAME Bootes II G 13 58 00.0 +12 51 00     15.4     ~ 241 0
22 NAME Bootes Dwarf Spheroidal Galaxy G 14 00 00.0 +14 30 00     12.8     ~ 437 0
23 NAME UMi Galaxy G 15 09 08.0 +67 13 21   13.60 10.6     ~ 1358 0
24 NAME Serpens Dwarf GlC 15 16 05.30 -00 06 41.0   15.1       ~ 734 1
25 NAME Hercules Dwarf Galaxy G 16 31 02.0 +12 47 30     14.0     ~ 345 1
26 NAME Dra dSph G 17 20 14.335 +57 55 16.39   12.40 10.6     ~ 1330 1
27 NAME Local Group GrG ~ ~           ~ 8379 0
28 NAME Orphan Stream St* ~ ~           ~ 253 0

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