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LIGO Experiments Cannot Detect Gravitational Waves by Using Laser Michelson Interferometers—Light’s Wavelength and Speed Change Simultaneously When Gravitational Waves Exist Which Make the Detections of Gravitational Waves Impossible for LIGO Experiments 被引量:9
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作者 Xiaochun Mei Zhixun Huang +1 位作者 Policarpo Yōshin Ulianov Ping Yu 《Journal of Modern Physics》 2016年第13期1749-1761,共13页
It is proved strictly based on general relativity that two important factors are neglected in LIGO experiments by using Michelson interferometers so that fatal mistakes were caused. One is that the gravitational wave ... It is proved strictly based on general relativity that two important factors are neglected in LIGO experiments by using Michelson interferometers so that fatal mistakes were caused. One is that the gravitational wave changes the wavelength of light. Another is that light’s speed is not a constant when gravitational waves exist. According to general relativity, gravitational wave affects spatial distance, so it also affects the wavelength of light synchronously. By considering this fact, the phase differences of lasers were invariable when gravitational waves passed through Michelson interferometers. In addition, when gravitational waves exist, the spatial part of metric changes but the time part of metric is unchanged. In this way, light’s speed is not a constant. When the calculation method of time difference is used in LIGO experiments, the phase shift of interference fringes is still zero. So the design principle of LIGO experiment is wrong. It was impossible for LIGO to detect gravitational wave by using Michelson interferometers. Because light’s speed is not a constant, the signals of LIGO experiments become mismatching. It means that these signals are noises actually, caused by occasional reasons, no gravitational waves are detected really. In fact, in the history of physics, Michelson and Morley tried to find the absolute motion of the earth by using Michelson interferometers but failed at last. The basic principle of LIGO experiment is the same as that of Michelson-Morley experiment in which the phases of lights were invariable. Only zero result can be obtained, so LIGO experiments are destined failed to find gravitational waves. 展开更多
关键词 Gravitational Wave LIGO experiment General relativity special relativity Michelson Interferometer michelson-morley experiment GW150914 WG151226
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Revelations from Historical Experiments on Constant Speed of Light
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作者 Xianming Meng 《Journal of Applied Mathematics and Physics》 2022年第3期623-640,共18页
The postulate of constant speed of light for all reference frames is the foundation of relativity theories. The resultant time dilation and length contraction are generally accepted but still perplexing for most peopl... The postulate of constant speed of light for all reference frames is the foundation of relativity theories. The resultant time dilation and length contraction are generally accepted but still perplexing for most people. By re-examining the historical evidence, this paper confirms Einstein’s postulate and reveals the mechanism for the constant speed of light: the interaction between photons and matter can impart the speed of an inertial frame to the photons and thus result in the same speed of light for different inertial reference frames. This mechanism can consistently explain all major experiments on the constant speed of light. 展开更多
关键词 Photon Matter Interaction special relativity Fizeau experiment michelson-morley experiment Hoek experiment Sagnac experiment
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论迈克尔逊-莫雷实验在创建狭义相对论中的作用 被引量:5
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作者 董晋曦 《自然科学史研究》 CSCD 1993年第2期136-145,共10页
本文通过对一系列科学史实及新版《爱因斯坦文集》中披露的1898-1902年间爱因斯坦给他未婚妻的信件的分析,进一步证实迈克尔逊-莫雷实验在狭义相对论创建过程中起了重要作用,并对该实验在科学发展史上的重要地位进行了讨论。
关键词 迈克尔逊 莫雷 实验 狭义相对论
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相对论与理想实验 被引量:1
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作者 杨小丽 《西安联合大学学报》 2001年第1期105-107,共3页
相对论的创立是 2 0世纪物理学领域的重大研究成果 ,现在它已成为高能物理、宇宙学等学科的理论基础。本文介绍了相对论的创立过程及其在物理学史上的重要地位 ,并对物理学的研究方法———理想实验在相对论中的运用进行深入探讨。
关键词 狭义相对论 广义相对论 理想实验
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快子(超光速粒子)理论能建立在狭义相对论的基础上吗? 被引量:2
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作者 黄政新 《大自然探索》 1991年第2期83-86,共4页
关键词 狭义相对论 快子理论
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论光速的相对性
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作者 杨晓红 《金华职业技术学院学报》 2003年第2期44-46,共3页
本文通过对迈克尔逊-莫雷实验、爱因斯坦狭义相对论原理阐述了光速不变性,同时进一步分析了多普勒效应,剖析了光同样具有相对性的特性。
关键词 光速 相对性 迈克尔逊-莫雷实验 爱因斯坦狭义相对论 多普勒效应
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迈克尔逊-莫雷实验的意义
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作者 李春泰 《琼州大学学报》 2006年第2期72-74,共3页
通过对迈克尔逊-莫雷实验物理学史的考察得知,狭义相对论是爱因斯坦对实验的新奇解释;得知理论物理学家的重要工作是解释的技巧。
关键词 迈克尔逊-莫雷实验 解释 狭义相对论
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