Large-scale radio continuum properties of 19 Virgo cluster galaxies The influence of tidal interactions, ram pressure stripping, and accreting gas envelopes
arXiv:1304.1279 · doi:10.1051/0004-6361/201321163
Abstract
Deep scaled array VLA 20 and 6cm observations including polarization of 19 Virgo spirals are presented. This sample contains 6 galaxies with a global minimum of 20cm polarized emission at the receding side of the galactic disk and quadrupolar type large-scale magnetic fields. In the new sample no additional case of a ram-pressure stripped spiral galaxy with an asymmetric ridge of polarized radio continuum emission was found. In the absence of a close companion, a truncated HI disk, together with a ridge of polarized radio continuum emission at the outer edge of the HI disk, is a signpost of ram pressure stripping. 6 out of the 19 observed galaxies display asymmetric 6cm polarized emission distributions. Three galaxies belong to tidally interacting pairs, two galaxies host huge accreting HI envelopes, and one galaxy had a recent minor merger. Tidal interactions and accreting gas envelopes can lead to compression and shear motions which enhance the polarized radio continuum emission. In addition, galaxies with low average star formation rate per unit area have a low average degree of polarization. Shear or compression motions can enhance the degree of polarization. The average degree of polarization of tidally interacting galaxies is generally lower than expected for a given rotation velocity and star formation activity. This low average degree of polarization is at least partly due to the absence of polarized emission from the thin disk. Ram pressure stripping can decrease whereas tidal interactions most frequently decreases the average degree of polarization of Virgo spiral galaxies. We found that moderate active ram pressure stripping has no influence on the spectral index, but enhances the global radio continuum emission with respect to the FIR emission, while an accreting gas envelope can but not necessarily enhances the radio continuum emission with respect to the FIR emission.
37 pages, 26 figures, accepted for publication in A&A
References in corpus (12)
- The cold gaseous halo of NGC 891
- Evolution of magnetic fields in galaxies and future observational tests with the Square Kilometre Array
- Cosmic rays and the magnetic field of the nearby starburst galaxy NGC 253
- Connecting Far-Infrared and Radio Morphologies of Disk Galaxies: Cosmic-Ray Electron Diffusion After Star Formation Episodes
- Ram pressure stripping of the multiphase ISM in the Virgo cluster spiral galaxy NGC 4438
- Pre-peak ram pressure stripping in the Virgo cluster spiral galaxy NGC 4501
- The characteristic polarized radio continuum distribution of cluster spiral galaxies
- The census of nuclear activity of late-type galaxies in the Virgo cluster
- Magnetic fields and gas in the cluster-influenced spiral galaxy NGC 4254 - II. Structures of magnetic fields
- A 500 kpc HI Extension of the Virgo Pair NGC4532/DDO137 Detected by the Arecibo Legacy Fast ALFA (ALFALFA) Survey
- Dependence of radio halo properties on star formation activity and galaxy mass
- Magnetic fields and gas in the cluster influenced spiral galaxy NGC4254 - I. Radio and X-rays observations
Cited by in corpus (32)
- Magnetic Fields in Spiral Galaxies
- Ram Pressure Stripping in High-Density Environments
- Magnetic fields in the nearby spiral galaxy IC 342: A multi-frequency radio polarization study
- HST and HI Imaging of Strong Ram Pressure Stripping in the Coma Spiral NGC 4921: Dense Cloud Decoupling and Evidence for Magnetic Binding in the ISM
- Exploring the AGN-ram pressure stripping connection in local clusters
- WALLABY Pilot Survey: the diversity of ram pressure stripping of the galactic HI gas in the Hydra Cluster
- The ram pressure stripped radio tails of galaxies in the Coma cluster
- The Ties that Bind? Galactic Magnetic Fields and Ram Pressure Stripping
- CHANG-ES V: Nuclear Radio Outflow in a Virgo Cluster Spiral after a Tidal Disruption Event
- Highly ordered magnetic fields in the tail of the jellyfish galaxy JO206
- CHANG-ES VII: Magnetic outflows from the Virgo cluster galaxy NGC 4388
- LoTSS Jellyfish Galaxies III. The first identification of jellyfish galaxies in the Perseus cluster
- Neutral hydrogen and magnetic fields in M83 observed with the SKA Pathfinder KAT-7
- Cosmic Magnetism in Centimeter and Meter Wavelength Radio Astronomy
- Extragalactic Magnetism with SOFIA (Legacy Program) -- I: The magnetic field in the multi-phase interstellar medium of M51
- GASP XXXVIII: The LOFAR-MeerKAT-VLA view on the non-thermal side of a jellyfish galaxy
- Evolution induced by dry minor mergers onto fast-rotator S0 galaxies
- Deciphering the radio-star formation correlation on kpc-scales I. Adaptive kernel smoothing experiments
- Radio continuum tails in ram pressure-stripped spiral galaxies: experimenting with a semi-empirical model in Abell 2255
- Walk on the Low Side: LOFAR explores the low-frequency radio emission of GASP jellyfish galaxies
- Variation in GMC Association Properties Across Bars, Spiral Arms, Inter-Arms, and Circumnuclear Region of M100 (NGC 4321) Extracted from ALMA Observations
- A Virgo Environmental Survey Tracing Ionised Gas Emission (VESTIGE). VIII. Modeling ram pressure stripping of diffuse gas in the Virgo cluster spiral galaxy NGC 4330
- ViCTORIA project: The LOFAR HBA Virgo Cluster Survey
- Stress-Testing Cosmic Ray Physics: The Impact of Cosmic Rays on the Surviving Disk of Ram Pressure Stripped Galaxies
- Enhancement of magnetic fields arising from galactic encounters
- Properties of galaxies with ring structures
- Spectropolarimetry with the Giant Metrewave Radio Telescope at 610 MHz: a case study of two Southern Compact Group fields
- Seeking large-scale magnetic fields in a pure-disk dwarf galaxy NGC 2976
- A 100 kpc Ram Pressure Tail Trailing the Group Galaxy NGC 2276
- HI in and behind the Hubble Frontier Field Clusters: A Deep MeerKAT Pilot Search out to
- The Volumetric Star Formation Law in the Almost Edge-on Galaxy NGC 4302 Revealed by ALMA
- Environment matters: stronger magnetic fields in satellite galaxies