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自由电子激光中平衡态螺旋轨道的稳定性问题
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作者 王昌标 《物理学报》 SCIE EI CAS CSCD 北大核心 1992年第7期1092-1096,共5页
本文用李亚普诺夫的运动稳定性理论成功地解决了具有均匀导向场和理想螺旋磁场自由电子激光中电子平衡态螺旋轨道的稳定性问题。利用李亚普诺夫第一方法,确定了轨道的不稳定区域;利用李亚普诺夫第二方法,严格地证明了高导向场区和低导... 本文用李亚普诺夫的运动稳定性理论成功地解决了具有均匀导向场和理想螺旋磁场自由电子激光中电子平衡态螺旋轨道的稳定性问题。利用李亚普诺夫第一方法,确定了轨道的不稳定区域;利用李亚普诺夫第二方法,严格地证明了高导向场区和低导向场区螺旋轨道的稳定性。 展开更多
关键词 自由电子激光 平衡态轨道 稳定性
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Shape and gravitational field of the ellipsoidal satellites
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作者 GAO BuXi HUANG Yong 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第10期2015-2020,共6页
The shape and gravitational field of ellipsoidal satellites are studied by using the tidal theory. For ellipsoidal satellites, the following conclusions were obtained: Firstly, in the early stage of the satellite form... The shape and gravitational field of ellipsoidal satellites are studied by using the tidal theory. For ellipsoidal satellites, the following conclusions were obtained: Firstly, in the early stage of the satellite formation, strong tidal friction allowed the satellites move in a synchronous orbit and evolve into a triaxial ellipsoidal shape. Because the tidal potential from the associated primary and the centrifugal potential from the satellite spin are nearly fixed at the surface, the early satellites are the viscoelastic celestial body, and their surfaces are nearly in the hydrostatic equilibrium state. The deformation is fixed in the surface of the satellite. By using the related parameters of primary and satellite, the tidal height and the theoretical lengths of three primary radii of the ellipsoidal satellite are calculated. Secondly, the current ellipsoidal satellites nearly maintain their ellipsoidal shape from solidification, which happened a few billion years ago. According to the satellite shape, we estimated the orbital period and spinning angular velocity, and then determined the evolution of the orbit. Lastly, assuming an ellipsoidal satellite originated in the hydrostatic equilibrium state, the surface shape could be determined by tidal, rotation, and additional potentials. However, the shape of the satellite's geoid differs from its surface shape. The relationship between these shapes is discussed and a formula for the gravitational harmonic coefficients is presented. 展开更多
关键词 eliipsoidal satellites hydrostatic equilibrium secular love number SHAPE tidal height
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