Title : The sensitivity of harassment to orbit: mass loss from early-type dwarfs in galaxy clusters

 

Authors : Smith, R.; Sánchez-Janssen, R.; Beasley, M. A.; Candlish, G. N.; Gibson, B. K.; Puzia, T. H.; Janz, J.; Knebe, A.; Aguerri, J. A. L.; Lisker, T.; Hensler, G.; Fellhauer, M.; Ferrarese, L.; Yi, S. K.

 

Abstract : We conduct a comprehensive numerical study of the orbital dependence of harassment on early-type dwarfs consisting of 168 different orbits within a realistic, Virgo-like cluster, varying in eccentricity and pericentre distance. We find harassment is only effective at stripping stars or truncating their stellar discs for orbits that enter deep into the cluster core. Comparing to the orbital distribution in cosmological simulations, we find that the majority of the orbits (more than three quarters) result in no stellar mass loss. We also study the effects on the radial profiles of the globular cluster systems of early-type dwarfs. We find these are significantly altered only if harassment is very strong. This suggests that perhaps most early-type dwarfs in clusters such as Virgo have not suffered any tidal stripping of stars or globular clusters due to harassment, as these components are safely embedded deep within their dark matter halo. We demonstrate that this result is actually consistent with an earlier study of harassment of dwarf galaxies, despite the apparent contradiction. Those few dwarf models that do suffer stellar stripping are found out to the virial radius of the cluster at redshift = 0, which mixes them in with less strongly harassed galaxies. However when placed on phase-space diagrams, strongly harassed galaxies are found offset to lower velocities compared to weakly harassed galaxies. This remains true in a cosmological simulation, even when haloes have a wide range of masses and concentrations. Thus phase-space diagrams may be a useful tool for determining the relative likelihood that galaxies have been strongly or weakly harassed.

 

http://adsabs.harvard.edu/abs/2015MNRAS.454.2502S

댓글 0

번호 제목 글쓴이 날짜
공지 All papers with web link to ADS with Yi, S search (refereed articles only) GEM 2012.06.05
34 (2019) New Horizon: On the origin of the stellar disk and spheroid of field galaxies at z=0.7 GEM 2019.08.31
33 (2020) YZiCS: On the Mass Segregation of Galaxies in Clusters admin 2020.12.08
32 (2020) Star-Gas Misalignment in Galaxies. I. The Properties of Galaxies from the Horizon-AGN Simulation and Comparisons to SAMI admin 2020.11.24
31 (2013) Demographics of Sloan Digital Sky Survey Galaxies along the Hubble Sequence GEM 2014.11.24
30 (2017) Constraints on the Evolution of the Galaxy Stellar Mass Function. II. The Quenching Timescale of Galaxies and Its Implication for Their Star Formation Rates GEM 2018.01.04
29 (2014) Sussing merger trees: the impact of halo merger trees on galaxy properties in a semi-analytic model GEM 2014.11.24
28 (2017) Phase-space Analysis in the Group and Cluster environment: Time since Infall and Tidal Mass Loss GEM 2017.04.17
27 (2016) The Preferential Tidal Stripping of Dark Matter versus Stars in Galaxies GEM 2017.02.17
26 (2018) Early-type Galaxy Spin Evolution in the Horizon-AGN Simulation GEM 2018.03.12
25 (2015) Outflows in Sodium Excess Objects GEM 2017.02.17
24 (2015) Demographics of Isolated Galaxies along the Hubble Sequence GEM 2017.02.17
23 (2018) YZiCS: Preprocessing of Dark Halos in the Hydrodynamic Zoom-in Simulation of Clusters GEM 2019.05.31
22 (2013) On the Assembly History of Stellar Components in Massive Galaxies GEM 2014.11.26
» (2015) The sensitivity of harassment to orbit: mass loss from early-type dwarfs in galaxy clusters GEM 2017.02.17
20 (2018) The different growth pathways of brightest cluster galaxies and intracluster light GEM 2019.05.31
19 (2013) The relationship between radio power at 22 and 43 GHz and black hole properties of AGN in elliptical galaxies GEM 2014.11.24
18 (2016) The Demographics of Galactic Bulges in the SDSS Database GEM 2017.02.17
17 (2014) Lifetime of merger features of equal-mass disk mergers GEM 2014.11.24
16 (2016) A Formation Scenario for the Disk of Satellites: Accretion of Satellites during Mergers GEM 2017.02.17