分形维数D = 2的分形结构中的恒加速度

IF 0.6 Q4 ASTRONOMY & ASTROPHYSICS Journal of Astronomy and Space Sciences Pub Date : 2023-03-01 DOI:10.5140/jass.2023.40.1.29
A. Yushchenko, Yeuncheol Jeong, V. Yushchenko, A. Demessinova, K. S. Jeong
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引用次数: 0

摘要

在不同尺度的引力束缚系统中,从太阳系到星系团,都能探测到一种无法解释的加速度,其数量级为10-8 cm s-2,接近于cH(其中c是光速,H是哈勃常数)。我们发现任何位于分形维数为D = 2的分形结构内的测试体都经历了相同阶的加速度,并证实了先前的工作,即光子通过该结构传播时由于引力红移而降低了频率。加速度可以与试验体的运动方向相反。物质的分形分布应该至少在几百兆秒差距到几百兆秒差距的尺度上,才能存在这种加速。
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Constant Acceleration in Fractal Structures with Fractal Dimension D = 2
An unexplained acceleration on the order of 10–8 cm s–2, which is close to cH, where c is the speed of light and H is the Hubble constant, is detected in gravitationally bound systems of different scales, from the solar system to clusters of galaxies. We found that any test body located inside a fractal structure with fractal dimension D = 2 experiences acceleration of the same order and confirmed the previous work that photons propagating through this structure decrease the frequency owing to gravitational redshift. The acceleration can be directed against the movement of the test body. The fractal distribution of the matter should be at scales of at least hundreds of megaparsecs to a few gigaparsecs for the existence of this acceleration.
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来源期刊
Journal of Astronomy and Space Sciences
Journal of Astronomy and Space Sciences ASTRONOMY & ASTROPHYSICS-
CiteScore
1.30
自引率
20.00%
发文量
0
审稿时长
12 weeks
期刊介绍: JASS aims for the promotion of global awareness and understanding of space science and related applications. Unlike other journals that focus either on space science or on space technologies, it intends to bridge the two communities of space science and technologies, by providing opportunities to exchange ideas and viewpoints in a single journal. Topics suitable for publication in JASS include researches in the following fields: space astronomy, solar physics, magnetospheric and ionospheric physics, cosmic ray, space weather, and planetary sciences; space instrumentation, satellite dynamics, geodesy, spacecraft control, and spacecraft navigation. However, the topics covered by JASS are not restricted to those mentioned above as the journal also encourages submission of research results in all other branches related to space science and technologies. Even though JASS was established on the heritage and achievements of the Korean space science community, it is now open to the worldwide community, while maintaining a high standard as a leading international journal. Hence, it solicits papers from the international community with a vision of global collaboration in the fields of space science and technologies.
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