论文标题

弦现象学的新颖观点

Novel Perspectives in String Phenomenology

论文作者

Faraggi, Alon E

论文摘要

弦理论是探索重力探索量子力学综合的主要当代框架。弦现象学旨在研究弦理论,同时保持与观察数据的接触。费米金$ z_2 \ times z_2 $ orbifold提供了一个案例研究,产生了现象学模型的丰富空间。十个维度中的弦理论会引起非苏格拉式tachyonic真空吸尘器,这可能是构建现象学上可行模型的良好起点。我讨论了这样的三代标准模型的示例,其中所有模量除了Dilaton,都被冷冻。 Möbius对称性可能在量子力学和重力的合成中起着核心作用。在本地版本中,它在字符串理论中起着核心作用。在全球版本中,它是量子力学(EPOQM)形式主义的等效假设的基础,这意味着空间空间是紧凑的。最近有人提出,宇宙封闭的证据存在于宇宙微波背景辐射\ cite {divms}中。

String theory is the leading contemporary framework to explore the synthesis of quantum mechanics with gravity. String phenomenology aims to study string theory while maintaining contact with observational data. The fermionic $Z_2\times Z_2$ orbifold provides a case study that yielded a rich space of phenomenological models. String theory in ten dimensions gives rise to non--supersymmetric tachyonic vacua that may serve as good starting points for the construction of phenomenologically viable models. I discuss an example of such a three generation standard--like model in which all the moduli, aside from the dilaton, are frozen. The Möbius symmetry may turn out to play a central role in the synthesis of quantum mechanics and gravity. In a local version it plays a central role in string theory. In a global version it underlies the Equivalence Postulate of Quantum Mechanics (EPOQM) formalism, which implies that spatial space is compact. It was recently proposed that evidence that the universe is closed exists in the Cosmic Microwave Background Radiation \cite{DiVMS}.

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