Estimating distance, pressure, and dust opacity using submillimeter observations of self-gravitating filaments
arXiv:1209.4111 · doi:10.1051/0004-6361/201219728
Abstract
We present a detailed study of the surface brightness profiles of dense filaments in IC 5146 using recent Herschel observations done with SPIRE. We describe the profile through an equilibrium solution of a self-gravitating isothermal cylinder pressure confined by its surrounding medium. In this first analysis we applied a simple modified black body function for the emissivity, neglecting any radiative transfer effects. Overall we found a good agreement of the observed surface brightness profiles with the model. The filaments indicate strong self-gravity with mass line densities M/l\gtrsim 0.5 (M/l)_max where (M/l)_max is the maximum possible mass line density. In accordance with the model expectations we found a systematic decrease of the FWHM, a steepening of the density profile, and for filaments heated by the interstellar radiation field a decrease of the luminosity to mass ratio for higher central column density and mass line density. We illustrate and discuss the possibility of estimating the distance, external pressure, and dust opacity. For a cloud distance D\sim500 pc and a gas temperature of T_cyl=10 K the model implies an external pressure p_ext/k\sim 2x10^4 K cm^-3 and an effective dust emission coefficient at 250 microns given by delta x kappa_0^em \sim 0.0588 cm^2 g^-1 where delta is the dust-to-gas ratio. Given the largest estimate of the distance to the cloud complex, 1 kpc, the model yields an upper limit delta x kappa_0^em \sim 0.12 cm^2 g^-1.
paper accepted for publication, 14 pages, 7 figures
References in corpus (2)
Cited by in corpus (16)
- On the universality of interstellar filaments: theory meets simulations and observations
- Changes Of Dust Opacity With Density in the Orion A Molecular Cloud
- Variation in dust properties in a dense filament of the Taurus molecular complex (L1506)
- A closer look at the "characteristic" width of molecular cloud filaments
- Gravitational fragmentation caught in the act: the filamentary Musca molecular cloud
- Droplets I: Pressure-Dominated Sub-0.1 pc Coherent Structures in L1688 and B18
- The width of Herschel filaments varies with distance
- Gravitational Infall onto Molecular Filaments II. Externally Pressurized Cylinders
- Polytropic models of filamentary interstellar clouds - I. Structure and stability
- Molecular Cloud Cores with High Deuterium Fraction: Nobeyama Single-Pointing Survey
- Accretion and Diffusion Timescales in Sheets and Filaments
- Synthetic Observations of the Evolution of Starless Cores in a Molecular Cloud Simulation: Comparisons with JCMT Data and Predictions for ALMA
- Formation of hub-filament structure triggered by cloud-cloud collision in W33 complex
- On the probability distribution function of the mass surface density of molecular clouds I
- On the probability distribution function of the mass surface density of molecular clouds. II
- investigation of cores and filamentary structures in the Perseus molecular cloud