数学物理学报(英文版)

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SOLUTIONS OF EULER-POISSON EQUATIONS IN Rn

邓引斌; 高燕; 向建林   

  1. 华中师范大学数学系, 武汉 430079
  • 收稿日期:2005-09-22 修回日期:2006-07-20 出版日期:2008-01-20 发布日期:2008-01-20
  • 通讯作者: 邓引斌
  • 基金资助:

    Research was supported by the Natural Science Foundation of China (10471052, 10631030)

SOLUTIONS OF EULER-POISSON EQUATIONS IN Rn

Deng Yinbin; Gao Yan; Xiang Jianlin   

  1. Department of Mathematics, Huazhong Normal University, Wuhan 430079, China
  • Received:2005-09-22 Revised:2006-07-20 Online:2008-01-20 Published:2008-01-20
  • Contact: Deng Yinbin

摘要:

In this article, the authors study the structure of the solutions for the Euler-Poisson equations in a bounded domain of Rn with the given angular velocity and n is an odd number. For a ball domain and a constant angular velocity,
both existence and non-existence theorem are obtained depending on the adiabatic gas constant γ. In addition, they obtain the monotonicity of the radius of the star with both angular velocity and center density. They also prove that the radius of a rotating spherically symmetric star, with given constant angular velocity and constant entropy, is uniformly bounded independent of the central density. This is different to the case of the non-rotating star.

关键词: Euler-Poisson equations, existence

Abstract:

In this article, the authors study the structure of the solutions for the Euler-Poisson equations in a bounded domain of Rn with the given angular velocity and n is an odd number. For a ball domain and a constant angular velocity,
both existence and non-existence theorem are obtained depending on the adiabatic gas constant γ. In addition, they obtain the monotonicity of the radius of the star with both angular velocity and center density. They also prove that the radius of a rotating spherically symmetric star, with given constant angular velocity and constant entropy, is uniformly bounded independent of the central density. This is different to the case of the non-rotating star.

Key words: Euler-Poisson equations, existence

中图分类号: 

  • 35L60