SIMBAD references

2021ApJ...911..106K - Astrophys. J., 911, 106-106 (2021/April-3)

Magnetohydrostatic equilibrium structure and mass of polytropic filamentary cloud threaded by lateral magnetic field.

KASHIWAGI R. and TOMISAKA K.

Abstract (from CDS):

Filamentary structures are recognized as a fundamental component of interstellar molecular clouds in observations made by the Herschel satellite. These filaments, especially massive filaments, often extend in a direction perpendicular to the interstellar magnetic field. Furthermore, the filaments sometimes have an apparently negative temperature gradient-that is, their temperatures decrease toward their centers. In this paper, we study the magnetohydrostatic equilibrium state of negative-indexed polytropic gas with the magnetic field running perpendicular to the axis of the filament. The model is controlled by four parameters: center-to-surface density ratio (ρcs), plasma β of the surrounding gas, radius of the parent cloud R0^′^ normalized by the scale height, and the polytropic index N. The steepness of the temperature gradient is represented by N. We found that the envelope of the column density profile becomes shallow when the temperature gradient is large. This reconciles the inconsistency between the observed profiles and those expected from the isothermal models. We compared the maximum line mass (mass per unit length), above which there is no equilibrium, with that of the isothermal nonmagnetized filament. We obtained an empirical formula to express the maximum line mass of a magnetized polytropic filament as λmax≃(λ0,max(N)/Mpc–1)2+[5.9(1.0+1.2/N)1/2cl/1µGpc)2]1/2M pc–1, where λ0,{max}(N) represents the maximum line mass of the nonmagnetized filament and Φcl indicates one-half of the magnetic flux threading the filament per unit length. Although the negative-indexed polytrope makes the maximum line mass decrease, compared with that of the isothermal model, a magnetic field threading the filament increases the line mass.

Abstract Copyright: © 2021. The American Astronomical Society. All rights reserved.

Journal keyword(s): Interstellar filaments - Polytropes - Interstellar magnetic fields - Star formation

Simbad objects: 8

goto Full paper

goto View the references in ADS

To bookmark this query, right click on this link: simbad:2021ApJ...911..106K and select 'bookmark this link' or equivalent in the popup menu