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首页> 外文期刊>Journal of Modern Physics >Motion Law of Graviton in Three-Dimensional Space and Its Influence on Star Distribution of Spiral Galaxy
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Motion Law of Graviton in Three-Dimensional Space and Its Influence on Star Distribution of Spiral Galaxy

机译:重力在三维空间中的运动规律及其对螺旋星系恒星分布的影响

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摘要

According to some fundamental hypotheses compatible with microphysics theory in allusion to property of graviton shot by the spiral galaxy, we set up a motion trace equation of graviton in the three-dimensional space, concluding method for measuring the velocity of graviton. This theory reveals formation mechanism of symmetric rotating arm image of the spiral galaxy. The rotating arm image conforms to Archimedes spiral. Under the condition of using dynamic constraints, the image that astrolabe is in thin-disk structure is naturally obtained. And then, we also deduce the law that astrolabe thickness h is inversely proportional to the square root of the distance rxy between astrolabe and galaxy center, according with actual crossrange galaxy observation image excellently. This article, by utilizing several typical galaxy observation images with completely different appearances and shapes, verifies the motion trace law of graviton in three-dimensional space. And the theoretical simulation data meet observation image data very well. As per the discovery in the simulation of three-dimensional theoretical model, changes of parameters in theoretical model will exert a great influence on the shape of galaxy. This theory owns exclusively important meaning, not only to astrophysics, but also to reconstruction and development of relativity theory and the whole basic physics theory, as well as breaking through the current dilemma in studying graviton property.
机译:根据与旋涡星系所发射的引力子的性质有关的,与微观物理学理论相吻合的一些基本假设,建立了引力子在三维空间中的运动轨迹方程,得出了测量引力子速度的方法。该理论揭示了螺旋星系对称旋转臂像的形成机理。旋转的手臂图像符合阿基米德螺旋线。在使用动态约束的条件下,自然获得了星形盘呈薄盘结构的图像。然后,我们还根据实际的跨距星系观测图像,推导了恒星厚度h与恒星与星系中心之间距离rxy的平方根成反比的定律。本文利用几个外观和形状完全不同的典型星系观测图像,验证了引力子在三维空间中的运动轨迹定律。理论仿真数据与观测图像数据非常吻合。根据三维理论模型仿真中的发现,理论模型参数的变化将对星系的形状产生很大的影响。该理论不仅对天体物理学具有重要意义,而且对相对论和整个基本物理学理论的重建和发展,以及突破目前研究引力子特性的难题都具有重要的意义。

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