Properties of cold and warm HI gas phases derived from a Gaussian decomposition of HI4PI data
arXiv:1806.04085 · doi:10.1051/0004-6361/201833146
Abstract
Context. A large fraction of the interstellar medium can be characterized as a multiphase medium. The neutral hydrogen gas is bistable with a cold and warm neutral medium (CNM and WNM respectively) but there is evidence for an additional phase at intermediate temperatures, a lukewarm neutral medium (LNM) that is thermally unstable. Aims. We use all sky data from the HI4PI survey to separate these neutral HI phases with the aim to determine their distribution and phase fractions in the local interstellar medium. Methods. HI4PI observations, gridded on an nside = 1024 HEALPix grid, were decomposed into Gaussian components. From the frequency distribution of the velocity dispersions we infer three separate linewidth regimes. Accordingly we extract the HI line emission corresponding to the CNM, LNM, and WNM. We generated all-sky maps of these phases in the local HI gas with -8 < v_LSR < 8 km/s. Results. Each of the HI phases shows distinct structures on all scales. The LNM never exists as a single phase but contributes on average 41% of the HI. The CNM is prominent only for 22% of the sky, contributes there on average 34% but locally up to 60% of the HI and is associated with dust at temperatures T_dust ~ 18.6 K. Embedded cold filaments show a clear anti-correlation between CNM and LNM. Also the smoothly distributed WNM is anti-correlated with the CNM. It contributes for the rest of the sky 39% with dust associated at temperatures T_dust ~ 19.4 K. Conclusions. The CNM in filaments exists on small scales. Here the observed anti-correlation between LNM and CNM implies that both, filaments and the surrounding more extended LNM, must have a common origin.
20 pages 22 figures, A&A in press
References in corpus (14)
- HI4PI: A full-sky HI survey based on EBHIS and GASS
- The Origin of the Magellanic Stream and Its Leading Arm
- The Effelsberg-Bonn HI Survey: Milky Way gas. First data release
- GASS: The Parkes Galactic All-Sky Survey. Update: improved correction for instrumental effects and new data release
- The 21-SPONGE HI Absorption Line Survey II: The temperature of Galactic HI
- Dust variations in the diffuse interstellar medium: constraints on Milky Way dust from Planck-HFI observations
- The 21-SPONGE HI Absorption Survey I: Techniques and Initial Results
- Cold Milky Way Hi gas in filaments
- Gaussian decomposition of HI surveys. III. Local HI
- Modelling and simulation of large-scale polarized dust emission over the southern Galactic cap using the GASS HI data
- Recovering interstellar gas properties with HI spectral lines: A comparison between synthetic spectra and 21-SPONGE
- HI anisotropies associated with radio-polarimetric filaments. Steep power spectra associated with cold gas
- Cygrid: A fast Cython-powered convolution-based gridding module for Python
- Gaussian decomposition of HI surveys. IV. Galactic intermediate- and high-velocity clouds
Cited by in corpus (35)
- WALLABY -- An SKA Pathfinder HI Survey
- Photodissociation and X-Ray Dominated Regions
- ROHSA: Regularized Optimization for Hyper-Spectral Analysis - Application to phase separation of 21 cm data
- PHANGS-JWST First Results: Tracing the Diffuse ISM with JWST Imaging of Polycyclic Aromatic Hydrocarbon Emission in Nearby Galaxies
- GASKAP-HI Pilot Survey Science I: ASKAP Zoom Observations of HI Emission in the Small Magellanic Cloud
- Magnetic field strength from turbulence theory (I): Using differential measure approach (DMA)
- HI filaments are cold and associated with dark molecular gas. HI4PI based estimates of the local diffuse CO-dark H2 distribution
- Extracting the cold neutral medium from HI emission with deep learning: Implications for Galactic foregrounds at high latitude
- Exploring the properties of warm and cold atomic hydrogen in the Taurus and Gemini regions
- Thermal and turbulent properties of the Warm Neutral Medium in the solar neighborhood
- Maps of the number of HI clouds along the line of sight at high galactic latitude
- Predictions of Cosmic Microwave Background Foregrounds Dust Polarization Using Velocity Gradients
- Spectral index of synchrotron emission: insights from the diffuse and magnetised interstellar medium
- The multiphase and magnetized neutral hydrogen seen by LOFAR
- A new method for spatially resolving the turbulence driving mixture in the ISM with application to the Small Magellanic Cloud
- Nature of Striation in 21 cm Channel Maps: Velocity Caustics
- Dust polarization modeling at large-scale over the Northern Galactic cap using EBHIS and Planck data
- Mapping the Galactic Magnetic Field Orientation and Strength in Three Dimensions
- Probing the cold neutral medium through HI emission morphology with the scattering transform
- Turbulent power distribution in the local interstellar medium
- A comparison between Faraday Tomography and Synchrotron Polarization Gradients
- Mapping the Thermal Condensation of Diffuse H I in the North Celestial Pole Loop
- Hybrid-chimes: A model for radiative cooling and the abundances of ions and molecules in simulations of galaxy formation
- The Kinematic Structure of Magnetically Aligned HI Filaments
- HI Self-absorption toward the Cygnus X North: From Atomic Filament to Molecular Filament
- Neutral hydrogen filaments in interstellar media: Are they physical?
- The physical and the geometrical properties of simulated cold HI structures
- The Spatial Power Spectrum and Derived Turbulent Properties of Isolated Galaxies
- Gas and Cosmic-Ray Properties in the MBM 53, 54, and 55 Molecular Clouds and the Pegasus Loop as Revealed by HI Line Profiles, Dust, and Gamma-Ray Data
- A Global Census of Metals in the Universe
- Associating LOFAR Galactic Faraday structures with the warm neutral medium
- The MeerKAT Absorption Line Survey (MALS) data release 3: Cold atomic gas associated with the Milky Way
- Considerations with stacking absorption spectra: cold HI gas in cirrus region of the Milky Way
- Origin of gas in the Magellanic Bridge: MeerKAT detection of HI 21-cm absorption
- Thermal instability and multiphase dynamics in the ISM with polybaric pressure effects