CO enhancement by magnetohydrodynamic waves; Striations in the Polaris Flare
arXiv:2303.04172 · doi:10.1051/0004-6361/202345880
Abstract
The formation of molecular gas in interstellar clouds is a slow process, but is enhanced by gas compression. Magnetohydrodynamic (MHD) waves create compressed quasiperiodic linear structures, referred to as striations. Striations are observed at column densities where the atomic to molecular gas transition takes place. We explore the role of MHD waves in the CO chemistry in regions with striations within molecular clouds. We target a region with striations in the Polaris Flare cloud. We conduct a CO J=2-1 survey in order to probe the molecular gas properties. We use archival starlight polarization data and dust emission maps in order to probe the magnetic field properties and compare against the CO properties. We assess the interaction of compressible MHD wave modes with CO chemistry by comparing their characteristic timescales. The estimated magnetic field is 38 - 76 G. In the CO integrated intensity map, we observe a dominant quasi-periodic intensity structure, which tends to be parallel to the magnetic field orientation and has a wavelength of one parsec approximately. The periodicity axis is 17 degrees off from the mean magnetic field orientation and is also observed in the dust intensity map. The contrast in the CO integrated intensity map is times larger than the contrast of the column density map, indicating that CO formation is enhanced locally. We suggest that a dominant slow magnetosonic mode with estimated period Myr, and propagation speed km~s, is likely to have enhanced the formation of CO, hence created the observed periodic pattern. We also suggest that, within uncertainties, a fast magnetosonic mode with period 0.48 Myr and velocity km~s could have played some role in increasing the CO abundance. Quasiperiodic CO structures observed in striation regions may be the imprint of MHD wave modes.
Accepted for publication in A&A, 16 pages, 13 figures
References in corpus (41)
- Estimating distances from parallaxes. V: Geometric and photogeometric distances to 1.47 billion stars in Gaia Early Data Release 3
- MAMBO Mapping of Spitzer c2d Small Clouds and Cores
- Gaia-2MASS 3D maps of Galactic interstellar dust within 3 kpc
- Simulating the formation of molecular clouds. I. Slow formation by gravitational collapse from static initial conditions
- Ultraviolet Survey of CO and H_2 in Diffuse Molecular Clouds: The Reflection of Two Photochemistry Regimes in Abundance Relationships
- Simulating the formation of molecular clouds. II. Rapid formation from turbulent initial conditions
- The relation between gas and dust in the Taurus Molecular Cloud
- Studies of regular and random magnetic fields in the ISM: statistics of polarization vectors and the Chandrasekhar-Fermi technique
- Placing Confidence Limits on Polarization Measurements
- Direct Measurement of the Ratio of Carbon Monoxide to Molecular Hydrogen in the Diffuse Interstellar Medium
- The sonic scale revealed by the world's largest supersonic turbulence simulation
- The JCMT BISTRO Survey: The magnetic field strength in the Orion A filament
- Magnetically Aligned Velocity Anisotropy in the Taurus Molecular Cloud
- The density structure and star formation rate of non-isothermal polytropic turbulence
- Formation of Magnetized Prestellar Cores with Ambipolar Diffusion and Turbulence
- On the Three-Dimensional Structure of Local Molecular Clouds
- Short GMC lifetimes: an observational estimate with the PdBI Arcsecond Whirlpool Survey (PAWS)
- The Transition from Atomic to Molecular Hydrogen in Interstellar Clouds: 21cm Signature of the Evolution of Cold Atomic Hydrogen in Dense Clouds
- Observational Constraints on Interstellar Grain Alignment
- The magnetic field and dust filaments in the Polaris Flare
- RoboPol: A four-channel optical imaging polarimeter
- RoboPol: AGN polarimetric monitoring data
- Photodissociation Region Diagnostics Across Galactic Environments
- The width of Herschel filaments varies with distance
- Striations in molecular clouds: Streamers or MHD waves?
- Striations in the Taurus molecular cloud: Kelvin-Helmholtz instability or MHD waves?
- Magnetic field fluctuations in anisotropic, supersonic turbulence
- Extreme Starlight Polarization in a Region with Highly Polarized Dust Emission
- A New Estimate of the Best Value for the Solar Galactocentric Distance
- Filaments and striations: anisotropies in observed, supersonic, highly-magnetised turbulent clouds
- Starlight-polarization-based tomography of the magnetized interstellar medium: PASIPHAE's line-of-sight inversion method
- A new method for measuring the 3D turbulent velocity dispersion of molecular clouds
- Fantastic Striations and Where to Find Them: Origin of Magnetically Aligned Striations in Interstellar Clouds
- Non-ideal MHD simulations of subcritical prestellar cores with non-equilibrium chemistry
- Physical properties of a very diffuse HI structure at high Galactic latitude
- The impact of magnetic fields on the chemical evolution of the supernova-driven ISM
- HI-H transition: exploring the role of the magnetic field
- Effect of OH depletion on measurements of the mass-to-flux ratio in molecular cloud cores
- The Musca molecular cloud: The perfect "filament" is still a sheet
- Universal Properties of Dense Clumps in Magnetized Molecular Clouds Formed through Shock Compression of Two-phase Atomic Gases
- Eliminating artefacts in Polarimetric Images using Deep Learning