Research on the Innovation and Development of Gravitational Wave Detection Technology

Fengxi Li
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Abstract

According to Einstein’s general theory of relativity, gravity is described as the curvature of space-time caused by gravitational sources, and to prove the existence of gravitational waves, many scientific research institutes around the world have begun to build equipment to try to detect gravitational waves in the vast background signals of the universe. At present, gravitational waves have been detected by many scientific research institutions and scientists. Now, the detection of gravitational waves has shifted to the direction of high precision and accuracy. This paper starts with the laser interferometer, the most basic instrument for gravitational wave detection. It expounds on the latest development progress and key technologies of gravitational wave detection in the current physical world, including noise suppression and gravitational wave detection spacecraft projects. In terms of laser interferometers, this paper describes their principle and key technologies and puts forward the difficult problems that still need to be tackled and studied. In terms of noise suppression, this paper describes the noise and interference that may be generated and how to suppress the noise to avoid interfering with the accuracy of the experiment. It also points out the shortcomings of current noise suppression techniques. For gravitational wave detection spacecraft projects, this paper first focuses on several key projects in the world, then describes the technologies and shortcomings of spacecraft, and puts forward the direction of improvement and in-depth research on these technologies. This paper aims to summarize the key technologies of gravitational wave detection in the world today and point out the direction of its future development.
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引力波探测技术的创新与发展研究
根据爱因斯坦的广义相对论,引力被描述为由引力源引起的时空弯曲,为了证明引力波的存在,世界上许多科研机构开始建造设备,试图在浩瀚的宇宙背景信号中探测引力波。目前,引力波已经被许多科研机构和科学家探测到。现在,引力波的探测已经转向高精度、高准确度的方向。本文从引力波探测最基本的仪器--激光干涉仪谈起。它阐述了当前物理世界中引力波探测的最新发展进展和关键技术,包括噪声抑制和引力波探测航天器项目。在激光干涉仪方面,本文介绍了其原理和关键技术,并提出了仍需攻克和研究的难点问题。在噪声抑制方面,本文介绍了可能产生的噪声和干扰,以及如何抑制噪声以避免干扰实验精度。本文还指出了当前噪声抑制技术的不足之处。对于引力波探测航天器项目,本文首先重点介绍了世界上的几个重点项目,然后阐述了航天器的技术和不足,并提出了改进和深入研究这些技术的方向。本文旨在总结当今世界引力波探测的关键技术,并指出其未来的发展方向。
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