Black Hole Burps and the Asymmetric Orbital Scale Hypothesis

Terry's archive Pub Date : 2023-09-22 DOI:10.48034/20230922
Terry Bollinger
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Abstract

Black holes are not behaving as expected. In particular, closer examination of existing data shows that instead of falling irreversibly into a singularity, stars consumed by supermassive black holes instead reappear years later as "burps" on the surface of the black hole. Surprisingly, one potentially much simpler explanation for these findings and phenomena that include polar jets, Type II supernova core rebounds, and the relative quiescence of mature supermassive black holes is to assume the "granularity" of spacetime expands enormously at the center of black holes without losing contact with the external universe. The resulting onion-like layering of matter has near-zero density and nearly frozen time at the center, creating complex dynamics in which object with strongly elliptical orbits undergo extreme compression and slowed time during the innermost phase of their orbits. The resulting structure more closely resembles a Fermi sea in which the spatially most extensive lowest energy states occupy the deepest levels of the black hole. While this Asymmetric Orbital Scale (AOS) hypothesis necessarily violates aspects of general relativity and entirely discards event horizons and singularities as non-physical, it is also readily testable by modifying existing orbital dynamics models to include variable-scale space. The result is mathematically akin to cavitation modeling.
黑洞打嗝和不对称轨道尺度假说
黑洞的行为并不像预期的那样。特别是,对现有数据的进一步研究表明,被超大质量黑洞吞噬的恒星并没有不可逆转地落入奇点,而是在几年后以黑洞表面的“打嗝”形式重新出现。令人惊讶的是,对于这些发现和现象,包括极地喷流、II型超新星核心反弹和成熟超大质量黑洞的相对静止,一个可能更简单的解释是,假设时空的“粒度”在黑洞中心极大地膨胀,而不会与外部宇宙失去联系。由此产生的洋葱状物质层具有接近零的密度和中心几乎冻结的时间,产生复杂的动力学,其中具有强椭圆轨道的物体在其轨道最内层阶段遭受极端压缩和减慢时间。由此产生的结构更类似于费米海,其中空间上最广泛的最低能态占据了黑洞的最深处。虽然这种不对称轨道尺度(AOS)假设必然违反广义相对论的某些方面,并且完全抛弃了视界和奇点作为非物理的,但它也很容易通过修改现有的轨道动力学模型来包括可变尺度空间来验证。其结果在数学上类似于空化模型。
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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