The Shape of the Higgs Field and the Shape of the Gravitational Field Impacts in Wave Propagation Methods: Scientific Explanation

P. Debnath
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Abstract

Above a critical mass  a strong enough gravitational field evens out the surface of the astronomical body, forming an elliptical shape. Because their gravitational fields are insufficient to smooth out their surfaces, small comets and asteroids can take any shape. However, astronomical entities of sufficient size, such as the Moon, Sun, and Earth, have strong enough gravitational fields to smooth out their surfaces and produce elliptical shapes. The optimum shape is a circle, and the elliptical shape is a slight deviation from it. The shapes of astronomical bodies are chosen to be elliptical because gravitational fields are elliptical, similar to electric and magnetic fields, which are also elliptical. Because gravitational forces are elliptical, astronomical entities that are large enough have elliptical forms. Because of the elliptical shape of the gravitational field, other astronomical bodies follow elliptical paths around the massive astronomical bodies. As a result, there is coordination among astronomical bodies' elliptical shapes, elliptical gravitational fields, and elliptical orbits around massive bodies. In this chapter, I'll explain why Higgs fields have elliptical shapes and how they enable wave propagation to be wavy to resemble a sine wave.
希格斯场的形状和引力场的形状对波传播方法的影响:科学解释
在一个临界质量以上,一个足够强的引力场使天体的表面均匀,形成一个椭圆形。因为它们的引力场不足以使它们的表面光滑,所以小彗星和小行星可以变成任何形状。然而,足够大的天体,如月球、太阳和地球,有足够强的引力场使它们的表面光滑并产生椭圆形状。最佳形状为圆形,椭圆形状略偏离圆形。天体的形状被选择为椭圆形是因为引力场是椭圆形的,类似于电场和磁场,它们也是椭圆形的。因为引力是椭圆形的,所以足够大的天体都是椭圆形的。由于引力场的椭圆形状,其他天体围绕大质量天体沿椭圆路径运行。因此,天体的椭圆形状、椭圆引力场和围绕大质量天体的椭圆轨道之间存在协调。在本章中,我将解释为什么希格斯场具有椭圆形状,以及它们如何使波的传播像正弦波一样呈波浪状。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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