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光线弯曲的同频互扰解释——碰撞星系团中不存在“引力透镜”推演出的暗物质
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Abstract:
本文通过对光子与引力子的作用分析,提出了光子–光子散射(碰撞)和光线同频互扰可以弯曲光线的新解释,说明光线从大质量发光星球旁边经过时,其光线弯曲程度与星球发光亮度成正比,与该光线距离星球中心的距离平方成反比。本文分析了星系碰撞中的暗物质形成过程,认为星系碰撞中的暗物质应该是由“引力透镜”对星球(亮度)弯曲光线的弯曲程度计算不足形成的,星系碰撞中不存在暗物质。
This paper analyzes the interaction between photons and gravitons and proposes a new explanation for the bending of light by photon-photon scattering (collision) and co-frequency interference of light, indicating that when light passes by a massive luminous planet, the degree of its bending is proportional to the brightness of the planet and inversely proportional to the square of the distance of the light from the center of the planet. This paper analyzes the formation process of dark matter in galaxy collisions and believes that dark matter in galaxy collisions should be formed by the under calculation of the degree of bending of light by the planet (brightness) by the “gravitational lens”, and there is no dark matter in galaxy collisions.
[1] | 郑雪瑶, 康现伟, 张丰收. 暗物质和修正引力理论的研究进展[J]. 大学物理, 2022(10): 80-85. |
[2] | 刘辽, 赵峥. 广义相对论[M]. 北京: 高等教育出版社, 2004. |
[3] | 傅莉萍, 束成钢. 引力透镜的基本原理及最新研究进展[J]. 天文学进展, 2005, 23(1): 56-69. |
[4] | The Science from the Hubble Space Telescope. https://esahubble.org/science/ |
[5] | 一对竞争的科学理论: 暗物质与修改引力理论[EB/OL]. http://news.sohu.com/a/500038284_136745, 2024-04-12. |
[6] | Clowe, D., Gonzalez, A. and Markevitch, M. (2004) Weak-Lensing Mass Reconstruction of the Interacting Cluster 1E 0657-558: Direct Evidence for the Existence of Dark Matter. The Astrophysical Journal, 604, 596-603. https://doi.org/10.1086/381970 |
[7] | 陈军利. MACS J 0025.4-1222和子弹头(1E0657-56)星系团中引力透镜观测结果的另类解释[J]. 现代物理, 2024, 14(1): 25-37. https://doi.org/10.12677/MP.2024.141004 |
[8] | 太阳辐射[EB/OL]. 百度百科. https://baike.baidu.com/item/%E5%A4%AA%E9%98%B3%E8%BE%90%E5%B0%84/5211804?fr=ge_ala, 2024-04-12. |
[9] | 星等(衡量天体光度的量) [EB/OL]. 百度百科. https://baike.baidu.com/item/%E6%98%9F%E7%AD%89/217343?fr=ge_ala, 2024-04-12. |
[10] | 朱继红. 圈量子引力理论与量子信息[D]: [硕士学位论文]. 武汉: 湖北大学, 2007. |