|
Modern Physics 2024
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
|
Abstract:
MACS J 0025.4-1222和子弹头(1E0657-56)星系团是正在碰撞星系团的两个例子,在这两个例子中,通过x射线观测的星系团质量中心和通过引力透镜观测的星系团质量中心出现了明显的分离,流行的观点认为,这是暗物质存在的有力证据。本文从引力和光线微观作用机理上作了分析,认为“引力弯曲光线”和“引力透镜”现象是光线经过大质量发光星球旁边时,光线与大质量发光星球发出的光线“同频干扰”形成的。在天文观测中使用引力透镜原理,不能反映不发光星球和气体的质量,它只能反映发光星球的质量。因此在存在大量不发光气体的碰撞星系团中,引力透镜推测的质心(发光星球质心)与星系总质量的质心出现分离是合理的,本文认为星系的质心偏离与暗物质无关。
MACS J 0025.4-1222 and Bullet Head (1E0657-56) galaxy clusters are two examples of colliding galaxy clusters. In these two examples, there is a clear separation between the mass centers of gal-axy clusters observed through X-ray observation and those observed through gravitational lensing, which is widely believed to be strong evidence of the existence of dark matter. This article analyzes the micro mechanisms of gravity and light, and believes that the phenomena of “gravitational bending of light” and “gravitational lensing” are formed by the “same frequency interference” be-tween the light and the light emitted by the massive luminous planet when the light passes by it. The principle of gravitational lensing used in astronomical observations cannot reflect the mass of non luminous planets and gases, it can only reflect the mass of luminous planets. Therefore, in colli-sion galaxy clusters with a large amount of non luminous gas, it is reasonable for the gravitational lens to speculate that the center of mass (center of mass of luminous planets) is separated from the center of mass of the total mass of the galaxy. This article believes that the deviation of the center of mass of the galaxy is not related to dark matter.
[1] | 陈军利, 康耀辉. 引力、引力场和引力子——关于引力能量波频率的推断[J]. 天文与天体物理, 2022, 10(1): 1-10. |
[2] | 陈军利. 引力是如何产生的?——引力线在偏转物体的运动方向[J]. 天文与天体物理, 2022, 10(2): 11-24.
https://doi.org/10.12677/AAS.2022.102002 |
[3] | 陈军利. 引力线在偏转物体运动方向分析[J]. 中文科技期刊数据库(全文版)自然科学, 2023(8): 52-57. |
[4] | 百度百科. 电磁波[EB/OL].
https://baike.baidu.com/link?url=h03LZmXQmLDuFhhklGluHSA5wmFhSmQgQbV0MJiZw13xb5xqWOy_UZvl2Vuz9Sx1g8wiZr40Uo9ewxuOwBPBwNa0YpoXi1e7gxsEjAtv8aToFbVmhyyZ3PQhiV-22qMX, 2023-08-03. |
[5] | 百度百科. 同频干扰[EB/OL].
https://baike.baidu.com/item/%E5%90%8C%E9%A2%91%E5%B9%B2%E6%89%B0/6509379?fr=ge_ala, 2023-08-03. |
[6] | von Soldner, J.G. (1804) ber die Ablenkung eines Lichtstrals von seiner geradlinigen Bewegung. Ber-liner Astronomisches Jahrbuch, 161-172. |
[7] | Einstein, A. (1905) On a Heuristic Point of View Concerning the Pro-duction and Transformation of Light. Annalen Der Physik, 1905, 1-18. |
[8] | Einstein, A. (1911). über den Einflu? der Schwerkraft auf die Ausbreitung des Lichtes. Annalen der Physik, 340, 898-908. https://doi.org/10.1002/andp.19113401005 |
[9] | Eddington, A.S. (1923) The Mathematical Theory of Relativity. Cambridge University Press, Cambridge. |
[10] | Einstein, A. (1936) Lense-Like Action of a Star by the Deviation of Light in the Gravitational Field, Science, 84, 506-507. https://doi.org/10.1126/science.84.2188.506 |
[11] | 科学领域爱好者-优美生态环境保卫者. 太阳光谱中没有粉红色, 为何我们能够看到这种颜色? [EB/OL]. 2020-07-07. https://baijiahao.baidu.com/s?id=1671526588004892354&wfr=spider&for=pc, 2023-08-03. |
[12] | 企业快讯. 你与健康照明生活可能只是差一个巨宏似太阳光谱[EB/OL]. 2019-06-26.
https://www.ledinside.cn/qiye/20190626-45504.html, 2023-08-03. |
[13] | 百度百科. 中子星(星体) [EB/OL].
https://baike.baidu.com/item/%E4%B8%AD%E5%AD%90%E6%98%9F/101875?fr=ge_ala, 2023-08-03. |
[14] | 百度百科. 子弹头星系团[EB/OL].
https://baike.baidu.com/item/%E5%AD%90%E5%BC%B9%E6%98%9F%E7%B3%BB%E5%9B%A2/19525045?fr=ge_ala, 2023-08-03. |
[15] | 人民资讯. 一对竞争的科学理论: 暗物质与修改引力理论[EB/OL].
https://baijiahao.baidu.com/s?id=1715835572771419196&wfr=spider&for=pc, 2023-08-03. |
[16] | 王岳雷. 宇宙中具有引力透镜的星系[EB/OL].
http://www.360doc.com/content/19/0302/17/19062466_818620318.shtml, 2023-08-03. |
[17] | 百度百科. MACS J0025.4-1222 [EB/OL].
https://baike.baidu.com/item/MACS%20J0025.4-1222/23119373?fr=ge_ala, 2023-08-03. |