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Comparison of Newtonian and Special-Relativistic Trajectories with the General-Relativistic Trajectory for a Low-Speed Weak-Gravity System

机译:低速弱重力系统的牛顿和特殊相对论轨迹与一般相对论轨迹的比较

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摘要

We show, contrary to expectation, that the trajectory predicted by general-relativistic mechanics for a low-speed weak-gravity system is not always well-approximated by the trajectories predicted by special-relativistic and Newtonian mechanics for the same parameters and initial conditions. If the system is dissipative, the breakdown of agreement occurs for chaotic trajectories only. If the system is non-dissipative, the breakdown of agreement occurs for chaotic trajectories and non-chaotic trajectories. The agreement breaks down slowly for non-chaotic trajectories but rapidly for chaotic trajectories. When the predictions are different, general-relativistic mechanics must therefore be used, instead of special-relativistic mechanics (Newtonian mechanics), to correctly study the dynamics of a weak-gravity system (a low-speed weak-gravity system).
机译:与预期相反,我们证明了由相对论力学预测的低速弱重力系统的轨迹并不总是由相对论力学和牛顿力学针对相同参数和初始条件预测的轨迹总是很好地近似的。如果系统是耗散的,则协议分解只会发生在混沌轨迹上。如果系统是非耗散的,则对于混沌轨迹和非混沌轨迹会发生一致性分解。对于非混沌轨迹,该协议缓慢分解,而对于混沌轨迹,该协议迅速分解。当预测不同时,因此必须使用一般相对论力学而不是特殊相对论力学(牛顿力学)来正确地研究弱重力系统(低速弱重力系统)的动力学。

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