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首页> 外文期刊>General Relativity and Gravitation: GRG Journal >Stability of circular orbits of spinning particles in Schwarzschild-like space-times
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Stability of circular orbits of spinning particles in Schwarzschild-like space-times

机译:类Schwarzschild时空中自旋粒子的圆形轨道的稳定性

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Circular orbits of spinning test particles and their stability in Schwarzschild-like backgrounds are investigated. For these space-times the equations of motion admit solutions representing circular orbits with particles spins being constant and normal to the plane of orbits. For the de Sitter background the orbits are always stable with particle velocity and momentum being co-linear along them. The world-line deviation equations for particles of the same spin-to-mass ratios are solved and the resulting deviation vectors are used to study the stability of orbits. It is shown that the orbits are stable against radial perturbations. The general criterion for stability against normal perturbations is obtained. Explicit calculations are performed in the case of the Schwarzschild space-time leading to the conclusion that the orbits are stable.
机译:研究了旋转的测试粒子的圆形轨道及其在类似Schwarzschild的背景中的稳定性。对于这些时空,运动方程允许解表示代表粒子自旋为常数且垂直于轨道平面的圆形轨道的解。对于de Sitter背景,轨道始终是稳定的,粒子速度和动量沿它们是共线的。求解了具有相同自旋质量比的粒子的世界线偏差方程,并将所得的偏差矢量用于研究轨道的稳定性。结果表明,轨道对径向扰动是稳定的。获得了抵抗正常扰动的稳定性的一般标准。在Schwarzschild时空的情况下进行了显式计算,得出的结论是轨道是稳定的。

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