Collapse and Fragmentation of Rotating Magnetized Clouds. I. Magnetic Flux - Spin Relation
نویسندگان
چکیده
We discuss evolution of the magnetic flux density and angular velocity in a molecular cloud core, on the basis of three-dimensional numerical simulations, in which a rotating magnetized cloud fragments and collapses to form a very dense optically thick core of > 5 × 10 cm. As the density increases towards the formation of the optically thick core, the magnetic flux density and angular velocity converge towards a single relationship between the two quantities. If the core is magnetically dominated its magnetic flux density approaches 1.5(n/5 × 10 cm) mG, while if the core is rotationally dominated the angular velocity approaches 2.57 × 10 (n/5 × 10 cm) yr, where n is the density of the gas. We also find that the ratio of the angular velocity to the magnetic flux density remains nearly constant until the density exceeds 5 × 10 cm. Fragmentation of the very dense core and emergence of outflows from fragments are shown in the subsequent paper.
منابع مشابه
Collapse and Fragmentation of Rotating Magnetized Clouds. II. Binary Formation and Fragmentation of First Cores
Subsequent to Paper I, the evolution and fragmentation of a rotating magnetized cloud are studied with use of three-dimensional MHD nested-grid simulations. After the isothermal runaway collapse, an adiabatic gas forms a protostellar first core at the center of the cloud. When the isothermal gas is stable for fragmentation in a contracting disk, the adiabatic core often breaks into several frag...
متن کاملFragmentation Instability of Molecular Clouds: Numerical Simulations
We simulate fragmentation and gravitational collapse of cold, magnetized molecular clouds. We explore the nonlinear development of an instability mediated by ambipolar diffusion, in which the collapse rate is intermediate to fast gravitational collapse and slow quasistatic collapse. Initially uniform stable clouds fragment into elongated clumps with masses largely determined by the cloud temper...
متن کاملDynamical Collapse of Magnetized Molecular Clouds: Formation of Self-Similarly Collapsing Disks
We followed fragmentation of magnetized lamentary clouds and formation of disks with two-dimensional numerical simulations. A lamentary cloud with longitudinal magnetic elds fragments to form geometrically thin disks perpendicular to the magnetic eld. Each disk collapses self-similarly toward the lament axis, keeping quasi-static equilibrium in the direction parallel to the axis. With some simp...
متن کاملOn the fragmentation of magnetized cloud cores
Recent calculations with a two-fluid smoothed particle hydrodynamics (SPH) code of the collapse of a magnetized dense core have found little evidence for fragmentation. These calculations have been interpreted as implying that magnetic braking by magnetic tension forces is sufficient to inhibit fragmentation, contrary to a suggestion by Boss that magnetic fields might encourage fragmentation. H...
متن کاملNonlinear stability of rotating two superposed magnetized fluids with the technique of the homotopy perturbation
In the present work, the Rayleigh-Taylor instability of two rotating superposed magnetized fluids within the presence of a vertical or a horizontal magnetic flux has been investigated. The nonlinear theory is applied, by solving the equation of motion and uses the acceptable nonlinear boundary conditions. However, the nonlinear characteristic equation within the elevation parameter is obtained....
متن کامل