论文标题
一个假设,即1I/2017 U1'Oumuamua和Lunar轨道扩张的非重力异常加速度可能会出于一个相同的原因引起
A Hypothesis that the Non-gravitational Anomalous Acceleration of 1I/2017 U1 'Oumuamua and Lunar Orbital Expansion May Cause by One Same Reason
论文作者
论文摘要
牛顿重力认为重力是一种力量,但是,如果对重力进行了量化,则在距离处作用,而不应是瞬时力,而是通过重力量子在光速下向方向传播。量子运动引力效应可能能够使牛顿的重力方程适应量子重力理论,并可以提高某些动态场景的准确性。这是一种使用量子运动学引力效应来描述1I/2017 U1'OUMUAMUA的异常加速度,计算结果与2017年10月19日 - 2018年5月3日在2018年10月19日期间的天文观测之间的异常加速度的方法。量子运动引力效应引起的额外速度的积累可能会提供额外的动能,这可能是导致月球轨道膨胀的原因之一。
The Newtonian gravity considers gravity is a force that action at a distance, however, if gravity is quantized, then it should not be an instantaneous force, but propagates toward a direction at the speed of light by gravitational quanta. The quantum kinematic gravitational effect may be able to adapt the Newton's gravitational equation to quantum gravity theory, and may improve its accuracy in some dynamic scenes. Here is a possible method of using quantum kinematic gravitational effect to describe the anomalous acceleration of 1I/2017 U1'Oumuamua, the margin of error between the calculated result and the astronomical observations during Oct 19, 2017 - May 3, 2018 is less than 20%. The accumulation of extra velocity caused by quantum kinematic gravitational effect may provide extra kinetic energy, and this may be one of the reasons which caused Lunar orbital expansion.