Title of article :
Self-gravitational force calculation of infinitesimally thin gaseous disks
Author/Authors :
Yen، نويسنده , , Chien-Chang and Taam، نويسنده , , Ronald E. and Yeh، نويسنده , , Ken Huai-Che and Jea، نويسنده , , Kang C.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
16
From page :
8246
To page :
8261
Abstract :
A thin gaseous disk has often been investigated in the context of various phenomena in galaxies, which point to the existence of starburst rings and dense circumnuclear molecular disks. The effect of self-gravity of the gas in the 2 D disk can be important in confronting observations and numerical simulations in detail. For use in such applications, a new method for the calculation of the gravitational force of a 2 D disk is presented. Instead of solving the complete potential function problem, we calculate the force in infinite planes in Cartesian and polar coordinates by a reproducing kernel method. Under the limitation of a 2 D disk, we specifically represent the force as a double summation of a convolution of the surface density and a fundamental kernel and employ a fast Fourier transform technique. In this method, the entire computational complexity can be reduced from O ( N 2 × N 2 ) to O ( N 2 ( log 2 N ) 2 ) , where N is the number of zones in one dimension. This approach does not require softening. The proposed method is similar to a spectral method, but without the necessity of imposing a periodic boundary condition. We further show this approach is of near second order accuracy for a smooth surface density in a Cartesian coordinate system.
Keywords :
Self-gravitating force , Infinitesimally thin disk , Poisson equation , Fast Fourier Transform , reproducing kernel
Journal title :
Journal of Computational Physics
Serial Year :
2012
Journal title :
Journal of Computational Physics
Record number :
1484833
Link To Document :
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