A simple but powerful method for determining the interior equilibrium structure of a non-spherical star is derived for uniformly rotating and tidally distorted stars. The vector differential equations governing the interior structure are reduced to a form identical with the standard equations of a spherical star, except for the presence of two dimensionless form factors representing the effects of distortion. One factor accounts for the buoyancy of centrifugal force and is evaluated exactly. The other factor expresses the effect of the non-spherical stellar shape, and it is shown that the factor can be determined very accurately, even if the stellar shape is known only approximately. With these factors determined, the problem of constructin...
Rotation is a physical phenomenon that impacts on the stellar structure and evolution of stars. Desp...
Rotating stellar models – homogeneous and evolved ones – were introduced for the first time, in ord...
Rotation has a strong influence in the structure of stars. The centrifugal force caused by rotation ...
Context. In close binary systems, the axial rotation and the mutual tidal forces of the component s...
A method is proposed to compute equilibrium structures of differentially rotating polytropic stars. ...
A method is proposed to compute equilibrium structures of differentially rotating polytropic stars. ...
Aims. This paper aims to study the configuration of two components caused by rotational and tidal d...
Spherical models of collisionless but quasi-relaxed stellar systems have long been studied as a natu...
Spherical models of collisionless but quasi-relaxed stellar systems have long been studied as a natu...
Spherical models of quasi-relaxed stellar systems provide a successful zeroth-order description of g...
Abstract (2,250 Maximum Characters): Several theories of tidal evolution, since the theory developed...
Abstract (2,250 Maximum Characters): Several theories of tidal evolution, since the theory developed...
Abstract (2,250 Maximum Characters): Several theories of tidal evolution, since the theory developed...
In a separate paper (Bertin & Varri) we have described a general method for the construction of self...
Aims. Two new families of self-consistent axisymmetric truncated equilibrium models for the descript...
Rotation is a physical phenomenon that impacts on the stellar structure and evolution of stars. Desp...
Rotating stellar models – homogeneous and evolved ones – were introduced for the first time, in ord...
Rotation has a strong influence in the structure of stars. The centrifugal force caused by rotation ...
Context. In close binary systems, the axial rotation and the mutual tidal forces of the component s...
A method is proposed to compute equilibrium structures of differentially rotating polytropic stars. ...
A method is proposed to compute equilibrium structures of differentially rotating polytropic stars. ...
Aims. This paper aims to study the configuration of two components caused by rotational and tidal d...
Spherical models of collisionless but quasi-relaxed stellar systems have long been studied as a natu...
Spherical models of collisionless but quasi-relaxed stellar systems have long been studied as a natu...
Spherical models of quasi-relaxed stellar systems provide a successful zeroth-order description of g...
Abstract (2,250 Maximum Characters): Several theories of tidal evolution, since the theory developed...
Abstract (2,250 Maximum Characters): Several theories of tidal evolution, since the theory developed...
Abstract (2,250 Maximum Characters): Several theories of tidal evolution, since the theory developed...
In a separate paper (Bertin & Varri) we have described a general method for the construction of self...
Aims. Two new families of self-consistent axisymmetric truncated equilibrium models for the descript...
Rotation is a physical phenomenon that impacts on the stellar structure and evolution of stars. Desp...
Rotating stellar models – homogeneous and evolved ones – were introduced for the first time, in ord...
Rotation has a strong influence in the structure of stars. The centrifugal force caused by rotation ...