Formation, Propagation and Detection of Gravitational Waves

M. M., S. R
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Abstract

Gravitational Waves are a new form of energy that is too sensitive to measure. The study of Gravitational Waves paves a unique way to approach the new era of universal science. It is quite interesting to note that experimental proof of the early theory of Einstein is successfully proven after many years. The manuscript depicts the concepts of Gravitational Waves, propagation of Gravitational Waves, its effect on objects on Earth and various factors that affect the measurements along with their method of approach to detect Gravitational Waves. Detecting Gravitational Waves is a tedious process and it requires a very highly sensitive experimental setup to carry out the detection as well as on considering the current trend of technology it is observed that detection faces massive limitations. Detection of Gravitational Waves opens up a new way for understanding supermassive binary systems such as neutron stars and black holes and also for studying on Early universe history.
引力波的形成、传播和探测
引力波是一种新的能量形式,它太敏感而无法测量。对引力波的研究为宇宙科学的新时代开辟了一条独特的道路。有趣的是,爱因斯坦早期理论的实验证明在多年后被成功地证明了。该手稿描述了引力波的概念,引力波的传播,它对地球上物体的影响以及影响测量的各种因素,以及他们探测引力波的方法。探测引力波是一个繁琐的过程,它需要一个非常高灵敏度的实验装置来进行探测,并且考虑到目前的技术趋势,探测面临着巨大的限制。引力波探测为认识中子星、黑洞等超大质量双星系统以及研究早期宇宙历史开辟了一条新途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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