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New Problematic Aspects of Current String Theories and Their Invariant Resolution

机译:当前弦理论的新问题及其不变性

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We identify new, rather serious, physical and mathematical inconsistencies of the current formulation of noncanonical or nonunitary string theories due to the lack of invariant units necessary for consistent measurements, lack of preservation in time of Hermiticity-observability, and other shortcomings. We propose three novel reformulations of string theories for matter of progressively increasing complexity via the novel iso-, geno-, and hyper-mathematics of hadronic mechanics, which resolve the current inconsistencies, while offering new intriguing possibilities, such as: an axiomatically consistent and invariant inclusion of gravity, the reduction of macroscopic irreverstbility to the most primitive level of vibrations of the universal substratum (ether), or the treatment of multi-valued, irreducible, biological structures. We then identify three corresponding classical formulations of string theories for antimatter via the novel anti-isomorphic isodual mathematics. We finally outline the intriguing features of the emerging new cosmologies (including biological structures, as it should be for all cosmologies), such as: universal invariance (rather than covariance) under a symmetry isomorphic to the Poincare group and its isodual; equal distributions of matter and antimatter in the universe (as a limit case); continuous creation; no need for the missing mass; significantly reduced dimensions; possibility of experimental identification of antimatter in the universe; identically null total characteristics of time, energy, linear and angular momentum, charge, etc.; and other intriguing features.
机译:由于缺乏一致测量所必需的不变单位,缺乏可观测性的隐性,以及其他缺点,我们发现了当前非规范或非单一弦理论的新的,相当严重的物理和数学上的矛盾。对于强子力学的新的等距,遗传和超数学,我们提出了三种新颖的弦论重新公式化,以解决复杂性逐步提高的问题,这些问题解决了当前的矛盾之处,同时提供了新的令人感兴趣的可能性,例如:公理一致和不变地包含引力,将宏观不可逆性降低到通用底层(ether)振动的最原始水平,或处理多值,不可还原的生物结构。然后,我们通过新颖的反同构等规数学,确定了三种相应的反物质经典弦理论。最后,我们概述了新兴的新宇宙学的有趣特征(包括对所有宇宙学都应包括的生物结构),例如:在庞加莱族及其等价对称的同构下的普遍不变性(而非协变);物质和反物质在宇宙中的分布相等(作为极限情况);持续创作;不需要丢失的质量;大幅缩小尺寸;实验确定宇宙中反物质的可能性;时间,能量,线性和角动量,电荷等的总特征完全相同;和其他有趣的功能。

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