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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >A gravitomagnetic effect on the orbit of a test body due to the earth's variable angular momentum
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A gravitomagnetic effect on the orbit of a test body due to the earth's variable angular momentum

机译:由于地球的可变角动量,对测试体的轨道产生的重力效应

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摘要

The well known general relativistic Lense-Thirring drag of the orbit of a test particle in the stationary field of a central slowly rotating body is generated, in the weak-field and slow-motion approximation of General Relativity, by a gravitomagnetic Lorentz-like acceleration in the equations of motion of the test particle. In it the gravitomagnetic field is due to the central body's angular momentum supposed to be constant. In the context of the gravitational analogue of the Larmor theorem, such acceleration looks like a Coriolis inertial term in an accelerated frame. In this paper the effect of the variation in time of the central body's angular momentum on the orbit of a test mass is considered. It can be shown that it is analogue to the inertial acceleration due to the time derivative of the angular velocity vector of an accelerated frame. The possibility of detecting such effect in the gravitational field of the Earth with LAGEOS-like satellites is investigated. It turns out that the orbital effects axe far too small to be measured. [References: 9]
机译:在广义相对论的弱场和慢运动近似中,通过重力像洛伦兹一样的加速度,在中央慢旋转体的静止场中产生了测试粒子轨道的众所周知的广义相对论的伦斯-蒂林旋翼阻力。在测试粒子的运动方程中。在其中,重力磁场是由于中心体的角动量假定为恒定的。在拉莫尔定理的引力类似物的上下文中,这种加速度看起来像是加速度框架中的科里奥利惯性项。在本文中,考虑了中心体角动量的时间变化对测试质量轨道的影响。可以证明,由于加速帧的角速度矢量的时间导数,它类似于惯性加速度。研究了使用类似LAGEOS的卫星在地球引力场中检测这种影响的可能性。事实证明,轨道效应轴太小而无法测量。 [参考:9]

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