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The Hyper-MUCHFUSS project : probing the Galactic halo with sdB stars
A. Tillich
, U. Heber
, S. Geier
, H. Hirsch
, P.F.L. Maxted
, B.T. Gansicke
, T.R. Marsh
,
R. Napiwotzki
, R. Ostensen
, R.D. Scholz
Centre for Astrophysics Research (CAR)
School of Physics, Engineering & Computer Science
Department of Physics, Astronomy and Mathematics
Research output
:
Contribution to journal
›
Article
›
peer-review
39
Citations (Scopus)
43
Downloads (Pure)
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Keyphrases
Bulge
66%
Dark Matter Halos
66%
Ejection
33%
Galactic Bulge
33%
Galactic Dark Matter
33%
Galactic Disks
100%
Galactic Halo
100%
Galactic Plane
33%
Galactic Potential
33%
Galactic Rotation
33%
Galaxies
66%
Halo
100%
Halo Stars
66%
High Velocity
33%
Hot Subdwarfs
33%
HyPer
100%
Hypervelocity
100%
Kinematical
33%
Kinematical Groups
33%
Kinematics
33%
Lower Limit
66%
Older Population
33%
Phase Space
33%
Population II Stars (1284)
66%
Proper Motions
33%
Quantitative Spectral Analysis
33%
Radial Velocity
33%
Radial Velocity Estimation
33%
Retrograde Motion
33%
Slingshot
66%
Space Information
33%
Spectrum Database
33%
Subdwarfs B Stars
33%
Supermassive Black Holes (SMBHs)
33%
Tidal Interactions
33%
Variable Stars
33%
Physics
B Subdwarf Stars
50%
Dark Matter
100%
Galactic Halos
100%
Galactic Rotation
50%
Halo Stars
100%
High-Velocity Stars
50%
Population II Stars
100%
Proper Motion
50%
Radial-Velocity Method
100%
Spectrum Analysis
50%
Subdwarfs
50%
Supermassive Black Holes
50%
Tidal Interaction
50%
Variable Star
50%
Velocity Measurement
50%