Cold fronts in galaxy clusters I: A case for the large-scale global eigen modes in unmagnetized and weakly magnetized cluster core
arXiv:2408.03988 · doi:10.1093/mnras/staf184
Abstract
Galaxy clusters show large-scale azimuthal X-ray surface brightness fluctuations known as cold fronts. Cold fronts are argued to originate due to sloshing driven by sub-halo passage at close proximity to the cluster center. While this causes large-scale perturbations, the physical mechanisms that can sustain spiral density structures are not clear. In this work, we explore whether long wavelength thermal instability is an explanation for cold front formation in a cluster core which is perturbed by sub-halos or AGN activity. Using global linear perturbation analysis, we show that unstable internal gravity waves form large-scale three-dimensional spirals, akin to observed cold fronts. We explore if the presence of magnetic field (along spherical ) may support such structures (by suppressing small scale Kelvin-Helmholtz modes) or disrupt them (by promoting additional thermal instability). We find that latter happens at shorter wavelengths and above characteristic Brunt Väisälä frequency (). Our work implies that large-scale spirals are sustained over a long timescale () even in presence of aligned magnetic fields that is otherwise supportive against mixing at the interface. Secondly, short-wavelength (but relatively longer along the field) unstable compressive modes may form within or in the vicinity of such spirals. The instability is an overstable slow wave, and grows in 2D at timescales times longer than the spiral growth timescale (via thermal instability). Thus this instability cannot destroy the large scale coherence.
16 pages, 8 figures in main content and 3 figures in Appendix, accepted in MNRAS
References in corpus (43)
- Shocks and cold fronts in galaxy clusters
- A moving cold front in the intergalactic medium of A3667
- Thermal Instability in Gravitationally-Stratified Plasmas: Implications for Multi-Phase Structure in Clusters and Galaxy Halos
- Thermal Instability & the Feedback Regulation of Hot Halos in Clusters, Groups, and Galaxies
- The origin of cold fronts in the cores of relaxed galaxy clusters
- Stirring Up the Pot: Can Cooling Flows In Galaxy Clusters Be Quenched By Gas Sloshing?
- Sloshing of the Magnetized Cool Gas in the Cores of Galaxy Clusters
- Chandra imaging of the X-ray core of Abell 1795
- Gas sloshing, cold front formation, and metal redistribution: the Virgo cluster as a quantitative test case
- Simulations of Prominence Formation in the Magnetized Solar Corona by Chromospheric Heating
- Chandra Temperature Map of Abell 754 and Constraints on Thermal Conduction
- Cold Fronts and Gas Sloshing in Galaxy Clusters with Anisotropic Thermal Conduction
- The impact of magnetic fields on thermal instability
- Cold Fronts: Probes of Plasma Astrophysics in Galaxy Clusters
- The Cosmic Large-Scale Structure in X-rays (CLASSIX) Cluster Survey I: Probing galaxy cluster magnetic fields with line of sight rotation measures
- Buoyancy Instabilities in a Weakly Collisional Intracluster Medium
- Fast magnetic field amplification in distant galaxyclusters
- Metal transport by gas sloshing in M87
- Multiphase gas in the circumgalactic medium: relative role of and density fluctuations
- Cold gas in cluster cores: Global stability analysis and non-linear simulations of thermal instability
- Intracluster magnetic filaments and an encounter with a radio jet
- Dynamics and Magnetization in Galaxy Cluster Cores Traced by X-ray Cold Fronts
- Statistical Properties of the Population of the Galactic Center Filaments: The Spectral Index and Equipartition Magnetic Field
- Deep low-frequency radio observations of Abell 2256 I: The filamentary radio relic
- HST imaging of the dusty filaments and nucleus swirl in NGC4696 at the centre of the Centaurus Cluster
- Different Methods of Forming Cold Fronts in Non-Merging Clusters
- Constraining Magnetic Fields in the Circumgalactic Medium
- Cold Fronts and Shocks Formed by Gas Streams in Galaxy Clusters
- Whistler-regulated MHD: Transport equations for electron thermal conduction in the high intracluster medium of galaxy clusters
- Thermal Instability in the CGM of Galaxies: Testing "Precipitation" Models with the FIRE Simulations
- Shatter or not: role of temperature and metallicity in the evolution of thermal instability
- Thermal Instabilities and Shattering in the High-Redshift WHIM: Convergence Criteria and Implications for Low-Metallicity Strong HI Absorbers
- CR Driven Multi-phase Gas Formed via Thermal Instability
- Dynamical thermal instability in highly supersonic outflows
- Synchrotron Intensity Gradient Revealing Magnetic Fields in Galaxy Clusters
- Spiral flows in cool-core galaxy clusters
- Populations of Magnetized Filaments in the Intracluster Medium and the Galactic Center
- A 1-dimensional hydrodynamic model for accretion, cooling and heating of gas in dark matter halos from to
- Gas sloshing and cold fronts in pre-merging galaxy cluster Abell 98
- Strong Magnetization Measured in the Cool Cores of Galaxy Clusters
- Deprojecting galaxy-cluster cold fronts: evidence for bulk, magnetised spiral flows
- A toy model for gas sloshing in galaxy clusters
- Advection by large-scale spiral flows in galaxy clusters