Molecular Tracers of Filamentary CO Emission Regions Surrounding the Central Galaxies of Clusters
arXiv:1007.1533 · doi:10.1051/0004-6361/200913185
Abstract
Optical emission is detected from filaments around the central galaxies of clusters of galaxies. These filaments have lengths of tens of kiloparsecs. The emission is possibly due to heating caused by the dissipation of mechanical energy and by cosmic ray induced ionisation. CO millimeter and submillimeter line emissions as well as H infrared emission originating in such filaments surrounding NGC~1275, the central galaxy of the Perseus cluster, have been detected. Our aim is to identify those molecular species, other than CO, that may emit detectable millimeter and submillimeter line features arising in these filaments, and to determine which of those species will produce emissions that might serve as diagnostics of the dissipation and cosmic ray induced ionisation. The time-dependent UCL photon-dominated region modelling code was used in the construction of steady-state models of molecular filamentary emission regions at appropriate pressures, for a range of dissipation and cosmic ray induced ionisation rates and incident radiation fields.HCO and CH emissions will potentially provide information about the cosmic ray induced ionisation rates in the filaments. HCN and, in particular, CN are species with millimeter and submillimeter lines that remain abundant in the warmest regions containing molecules. Detections of the galaxy cluster filaments in HCO, CH, and CN emissions and further detections of them in HCN emissions would provide significant constraints on the dissipation and cosmic ray induced ionisation rates.
11 pages, 3 figures, 3 tables, accepted in A&A
References in corpus (11)
- A deeper X-ray study of the core of the Perseus galaxy cluster: the power of sound waves and the distribution of metals and cosmic rays
- Cold molecular gas in the Perseus cluster core - Association with X-ray cavity, Halpha filaments and cooling flow -
- Collisional heating as the origin of filament emission in galaxy clusters
- Radially-Inflowing Molecular Gas in NGC 1275 Deposited by a X-ray Cooling Flow in the Perseus Cluster
- Discovery of atomic and molecular mid infra-red emission lines in off-nuclear regions of NGC 1275 and NGC 4696 with the Spitzer Space Telescope
- Cold gas in the Perseus cluster core: Excitation of molecular gas in filaments
- The origin of molecular hydrogen emission in cooling-flow filaments
- Molecular line intensities as measures of cloud masses - II. Conversion factors for specific galaxy types
- Observations of CO in the eastern filaments of NGC 1275
- Cold gas in the Intra Cluster Medium: implications for flow dynamics and powering optical nebulae
- The generation of optical emission-line filaments in galaxy clusters
Cited by in corpus (10)
- Extreme Cosmic-Ray-Dominated-Regions: a new paradigm for high star formation density events in the Universe
- Chemistry in Cosmic-Ray Dominated Regions (CRDRs)
- Resolving the Bright HCN(1-0) Emission toward the Seyfert 2 Nucleus of M51: Shock Enhancement by Radio Jets and Weak Masing by Infrared Pumping?
- Modeling the Atomic-to-Molecular Transition and Chemical Distributions of Turbulent Star-Forming Clouds
- Non-thermal Emissions from Cool Cores Heated by Cosmic-Rays in Galaxy Clusters
- Role of Electon Excitation and Nature of Molecular Gas in Cluster Central Elliptical Galaxies
- First observations of CN(2-1), HCO(3-2) and CH(3-2) emission lines in the Perseus cluster: constraints on heating mechanisms in the cluster gas
- Major impact from a minor merger - The extraordinary hot molecular gas flow in the Eye of the NGC 4194 Medusa galaxy
- Deuterated species in extragalactic star-forming regions
- A Massive, Clumpy Molecular Gas Distribution and Displaced AGN in Zw 3146