...
首页> 外文期刊>Astrophysics and Space Science >Calculation of radar signal delays in the vicinity of the Sun due to the contribution of a Yukawa correction term in the gravitational potential
【24h】

Calculation of radar signal delays in the vicinity of the Sun due to the contribution of a Yukawa correction term in the gravitational potential

机译:由于Yukawa校正项对重力的贡献,计算了太阳附近的雷达信号延迟

获取原文
获取原文并翻译 | 示例
           

摘要

There has been a renewed interest in the recent years in the possibility of deviations from the predictions of Newton’s “inverse-square law” of universal gravitation. One of the reasons for renewing this interest lies in various theoretical attempts to construct a unified elementary particle theory, in which there is a natural prediction of new forces over macroscopic distances. Therefore the existence of such a force would only coexist with gravity, and in principle could only be detected as a deviation from the inverse square law, or in the “universality of free fall” experiments. New experimental techniques such that of Sagnac interferometry can help explore the range of the Yukawa correction λ≥1014 m where such forces might be present. It may be, that future space missions might be operating in this range which has been unexplored for very long time. To study the effect of the Yukawa correction to the gravitational potential and its corresponding signal delay in the vicinity of the Sun, we use a spherically symmetric modified space time metric where the Yukawa correction its added to the gravitational potential. Next, the Yukawa correction contribution to the signal delay is evaluated. In the case where the distance of closest approach is much less than the range λ, it results to a signal time delay that satisfies the relation t(b<λ)≅37.7t(b=λ).
机译:近年来,人们重新开始关注牛顿万有引力的“平方反比定律”的预测偏离的可能性。重新引起这种兴趣的原因之一在于建立统一的基本粒子理论的各种理论尝试,其中自然预测了在宏观距离上的新作用力。因此,这种力的存在只会与重力共存,并且原则上只能检测为与平方反比定律的偏差或“自由落体大学”实验中的偏差。 Sagnac干涉测量等新的实验技术可以帮助探索可能存在这种力的Yukawa校正λ≥10 14 m的范围。可能是,未来的太空任务可能会在这个范围内运行,而这个范围已经被探索了很长时间。为了研究汤川校正对重力的影响及其在太阳附近的信号延迟,我们使用了球对称修正时空度量,其中汤川校正将其添加到了重力上。接下来,评估汤川校正对信号延迟的贡献。在最接近的距离远小于范围λ的情况下,导致信号时间延迟满足关系式t(b <λ)≅37.7t(b =λ)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号