The thermal state of molecular clouds in the Galactic Center: evidence for non-photon-driven heating
arXiv:1211.7142 · doi:10.1051/0004-6361/201220096
Abstract
We used the Atacama Pathfinder Experiment (APEX) 12 m telescope to observe the J_KaKc=3_03-2_02, 3_22-2_21, and 3_21-2_20 transitions of para-H_2CO at 218 GHz simultaneously to determine kinetic temperatures of the dense gas in the central molecular zone (CMZ) of our Galaxy. The map extends over approximately 40 arcmin x 8 arcmin (~100x20 pc^2) along the Galactic plane with a linear resolution of 1.2 pc. The strongest of the three lines, the H_2CO (3_03-2_02) transition, is found to be widespread, and its emission shows a spatial distribution similar to ammonia. The relative abundance of para-H_2CO is 0.5-1.2 10^{-9}, which is consistent with results from lower frequency H_2CO absorption lines. Derived gas kinetic temperatures for individual molecular clouds range from 50 K to values in excess of 100 K. While a systematic trend toward (decreasing) kinetic temperature versus (increasing) angular distance from the Galactic center (GC) is not found, the clouds with highest temperature (T_kin > 100 K) are all located near the nucleus. For the molecular gas outside the dense clouds, the average kinetic temperature is 65+/-10 K. The high temperatures of molecular clouds on large scales in the GC region may be driven by turbulent energy dissipation and/or cosmic-rays instead of photons. Such a non-photon-driven thermal state of the molecular gas provides an excellent template for the more distant vigorous starbursts found in ultraluminous infrared galaxies (ULIRGs).
23 pages, 11 figures, A&A in press
References in corpus (6)
- WFCAM, Spitzer-IRAC and SCUBA observations of the massive star forming region DR21/W75: I. The collimated molecular jets
- Chandra-HETGS Observations of the Brightest Flare Seen from Sgr A*
- Organic Molecules in the Galactic Center. Hot Core Chemistry without Hot Cores
- Cosmic-Ray Heating of Molecular Gas in the Nuclear Disk: Low Star Formation Efficiency
- Formaldehyde as a Tracer of Extragalactic Molecular Gas I. Para-H_2CO Emission From M 82
- Optimization of Moment Masking for CO Spectral Line Surveys
Cited by in corpus (109)
- What controls star formation in the central 500 pc of the Galaxy?
- The dynamical evolution of molecular clouds near the Galactic Centre - I. Orbital structure and evolutionary timeline
- Dense gas in the Galactic central molecular zone is warm and heated by turbulence
- Molecular gas kinematics within the central 250 pc of the Milky Way
- The link between turbulence, magnetic fields, filaments, and star formation in the Central Molecular Zone cloud G0.253+0.016
- Photodissociation and X-Ray Dominated Regions
- Star formation relations and CO SLEDs across the J-ladder and redshift
- A Dynamical Model for the Formation of Gas Rings and Episodic Starbursts Near Galactic Centres
- The Galactic Center Molecular Cloud Survey. I. A Steep Linewidth-Size Relation & Suppression of Star Formation
- Cosmic-ray induced destruction of CO in star-forming galaxies
- Impact of low-energy cosmic rays on star formation
- On Cosmic Ray-Driven Grain Chemistry in Cold Core Models
- A cluster in the making: ALMA reveals the initial conditions for high-mass cluster formation
- Turbulence sets the initial conditions for star formation in high-pressure environments
- A Simple and Accurate Network for Hydrogen and Carbon Chemistry in the ISM
- Low-J CO Line Ratios From Single Dish CO Mapping Surveys and PHANGS-ALMA
- 'The Brick' is not a brick: A comprehensive study of the structure and dynamics of the Central Molecular Zone cloud G0.253+0.016
- The complex chemistry of hot cores in Sagittarius B2(N): Influence of cosmic-ray ionization and thermal history
- The Survey of Water and Ammonia in the Galactic Center (SWAG): Molecular Cloud Evolution in the Central Molecular Zone
- The dynamical evolution of molecular clouds near the Galactic Centre - II. Spatial structure and kinematics of simulated clouds
- High-energy particles and radiation in star-forming regions
- Molecular gas heating mechanisms, and star formation feedback in merger/s tarbursts: NGC 6240 and Arp 193 as case studies
- G0.253+0.016: A centrally condensed, high-mass protocluster
- The Central 300 pc of the Galaxy probed by infrared spectra of H and CO: part I. Predominance of warm and diffuse gas and high H ionization rate
- Detection of Widespread Hot Ammonia in the Galactic Center
- The Excitation of HCN and HCO+ in the Galactic Center Circumnuclear Disk
- Multi-wavelength astronomical searches for primordial black holes
- The dynamics and star-forming potential of the massive Galactic centre cloud G0.253+0.016
- Tracing the Conversion of Gas into Stars in Young Massive Cluster Progenitors
- On the temperature structure of the Galactic Centre cloud G0.253+0.016
- 13CO and C18O emission from a dense gas disk at z=2.3: abundance variations, cosmic rays and the initial conditions for star formation
- Chemical Features in the Circumnuclear Disk of the Galactic Center
- Abundant Methanol Masers but no New Evidence for Star Formation in GCM0.253+0.016
- The Dense Gas Fraction in Galactic Center Clouds
- Star Formation Rates of Massive Molecular Clouds in the Central Molecular Zone
- The Milky Way's nuclear stellar disc: A dynamically cool and metal-rich component formed from the Central Molecular Zone?
- Central molecular zones in galaxies: 12CO-to-13CO ratios, carbon budget, and X factors
- ATCA Survey of Ammonia in the Galactic Center: The Temperatures of Dense Gas Clumps between SgrA* and SgrB2
- Star formation in a high-pressure environment: An SMA view of the Galactic centre dust ridge
- Ammonia Thermometry of Star Forming Galaxies
- A Census of Early Phase High-Mass Star Formation in the Central Molecular Zone
- The Galactic Center Molecular Cloud Survey. II. A Lack of Dense Gas & Cloud Evolution along Galactic Center Orbits
- The dense gas mass fraction in the W51 cloud and its protoclusters
- Characterizing the properties of cluster precursors in the MALT90 survey
- ISM Processing in the Inner 20 pc in Galactic center
- ATLASGAL-selected massive clumps in the inner Galaxy: VI. Kinetic temperature and spatial density measured with formaldehyde
- The Molecular Gas Environment in the 20 km s Cloud in the Central Molecular Zone
- Sub-millimetre compactness as a critical dimension to understand the Main Sequence of star-forming galaxies
- Isomers in Interstellar Environments (I): The Case of Z- and E-Cyanomethanimine
- Star Formation in the vicinity of Nuclear Black Holes: Young Stellar Objects close to Sgr A*
- Fire in the Heart: A Characterization of the High Kinetic Temperatures and Heating Sources in the Nucleus of NGC253
- The dynamical evolution of molecular clouds near the Galactic Centre -- III. Tidally--induced star formation in protocluster clouds
- Kinetic temperature of massive star forming molecular clumps measured with formaldehyde
- ALMA Observations of Massive Clouds in the Central Molecular Zone: Ubiquitous Protostellar Outflows
- High-mass star-forming cloud G0.38+0.04 in the Galactic Center Dust Ridge contains H2CO and SiO masers
- An ATCA Survey of Sagittarius~B2 at 7~mm: Chemical Complexity Meets Broadband Interferometry
- Kinetic temperature of massive star-forming molecular clumps measured with formaldehyde. III. The Orion Molecular Cloud 1
- Temperature structures in Galactic Center clouds - Direct evidence for gas heating via turbulence
- Kinetic temperature of massive star forming molecular clumps measured with formaldehyde. II. The Large Magellanic Cloud
- Origins of Scatter in the Relationship Between HCN 1-0 and Dense Gas Mass in the Galactic Center
- The chemical structure of young high-mass star-forming clumps: (II) parsec-scale CO depletion and deuterium fraction of
- Kinematics and properties of the Central Molecular Zone as probed with [C II]
- A 2-3 mm high-resolution molecular line survey towards the centre of the nearby spiral galaxy NGC 6946
- Sulphur and carbon isotopes towards Galactic centre clouds
- The Life Cycle of the Central Molecular Zone. II: Distribution of atomic and molecular gas tracers
- HCN =4-3, HNC =1-0, =1-0, and =10-9 Maps of Galactic Center Region I: Spatially-Resolved Measurements of Physical Conditions and Chemical Composition
- Modelling the formation of the circumnuclear ring in the Galactic centre
- Star Formation and Dynamics in the Galactic Centre
- The chemical structure of young high-mass star-forming clumps: (I) Deuteration
- Kinetic temperature of massive star-forming molecular clumps measured with formaldehyde IV. The ALMA view of N113 and N159W in the LMC
- Inferring the evolutionary stages of the internal structures of NGC 7538 S and IRS1 from chemistry
- Ionized gas at the edge of the Central Molecular Zone
- A Centimeter-wave Study of Methanol and Ammonia Isotopologues in Sgr B2(N): Physical and chemical differentiation between two hot cores
- A global view on star formation: The GLOSTAR Galactic plane survey VIII. Formaldehyde absorption in Cygnus~X
- Hot Molecular Gas in the Circumnuclear Disk
- Absorption Filaments Towards the Massive Clump G0.253+0.016
- ALMA Images of the Host Cloud of the Intermediate-mass Black Hole Candidate CO-0.40-0.22$^* : No Evidence for Cloud-Black Hole Interaction, but Evidence for a Cloud-Cloud Collision
- A study of methanol and silicon monoxide production through episodic explosions of grain mantles in the Central Molecular Zone
- A 6.7 GHz methanol maser survey of the central molecular zone
- Star Formation Sites toward the Galactic Center Region: The Correlation of CH3OH Masers, H2O Masers, and Near-IR Green Sources
- Molecular Cloud Cores in the Galactic Center 50 Molecular Cloud
- The diffuse molecular component in the nuclear bulge of the Milky Way
- Towards a three-dimensional distribution of the molecular clouds in the Galactic Centre
- The Milky Way's Central Molecular Zone
- The Role of Non-ionizing Radiation Pressure in Star Formation: The Stability of Cores and Filaments
- The foot points of the Giant Molecular Loops in the Galactic center region
- Modeling Turbulence in Galactic Centers
- Living on the edge of the Central Molecular Zone: G1.3 is the more likely candidate for gas accretion into the CMZ
- Submillimeter observations of molecular gas interacting with the supernova remnant W28
- JWST reveals widespread CO ice and gas absorption in the Galactic Center cloud G0.253+0.016
- Kinematics of Galactic Centre clouds shaped by shear-seeded solenoidal turbulence
- Kinetic temperature of massive star-forming molecular clumps measured with formaldehyde V. The massive filament DR21
- A mean density of for Central Molecular Zone clumps -- Evidences for shear-enabled pressure equilibrium in the Galactic Center
- A common origin for the circumnuclear disc and the nearby molecular clouds in the Galactic Centre
- Cloud-cloud collision and star formation in G013.313+0.193
- A Multi-Line Ammonia Survey of the Galactic Center Region with the Tsukuba 32-m Telescope - I. Observations and Data
- HCN =4-3, HNC =1-0, =1-0, and =10-9 Maps of Galactic Center Region II.: Physical Properties of Dense Gas Clumps and Probability of Star Formation
- Modelling of ionising feedback with Smoothed Particle Hydrodynamics and Monte Carlo Radiative Transfer on a Voronoi grid
- The ALMA Survey of 70 m Dark High-mass Clumps in Early Stages (ASHES). XII. Unanchored Forked Stream in the Propagating Path of a Protostellar Outflow
- On the effects of UV photons/X-rays on the chemistry of the Sgr B2 cloud
- Shock-induced HCNH+ abundance enhancement in the heart of the starburst galaxy NGC 253 unveiled by ALCHEMI
- Molecular gas properties in young stellar clusters with a suppressed star cluster wind
- Turbulent Pressure Heats Gas and Suppresses Star Formation in Galactic Bar Molecular Clouds
- The complex multi-scale structure in simulated and observed emission maps of the proto-cluster cloud G0.253+0.016 (`the Brick')
- ALMA observations of massive clouds in the central molecular zone: slim filaments tracing parsec-scale shocks
- Cloud-Cloud Collision in the Galactic Center Arc
- Does the HCN/CO ratio trace the star-forming fraction of gas? II. Variations in CO and HCN Emissivity
- The fragmentation of molecular clouds in starburst environments
- The Chemistry and Kinematics of Two Molecular Clouds near Sagittarius A*