论文标题

新的Einstein-Hilbert类型时空和物质的动作 - 非核对称性一般相对论理论 -

New Einstein-Hilbert type action of space-time and matter -Nonlinear-supersymmetric general relativity theory-

论文作者

Shima, Kazunari

论文摘要

可以在(不稳定的)RIEMANN时空进行一般相对论原则的几何论点,这是受超对称性(NLSUSY)的非线性表示的启发,在此,除了普通的Minkowski One $ x^$ x^a的新自由度,SL的Grassmann of Freedom $ nefery $ $ nterive $ $ cant(2,c) EINSTEIN-HILBERT(EH)型动作具有全球NLSUSY不变性(NLSUSYGR),配备了宇宙学术语。由于时空NLSUSYGR的NLSUSY性质,NLSUSYGR的性质会自发地崩溃(大崩溃),从而自发地对GRAVITON的E-H行动,NAMBU-GOLDSTONE FERMION $ψ$及其重力相互作用的NLSUSY动作。同时,通用吸引力的引力将构成与衬里 - 舒适(LSUSY)超级峰(SP)对称的NG fermion-composites(SP)时空的对称性,这给出了新的范式,以实现时空和物质统一的新范式。自然地桥梁宇宙学和低能粒子物理学,并为宇宙学,SM和神秘关系的未解决问题提供了新的见解,例如时空维度{\ it四},Susy Breaking的起源,暗能量和暗物质,暗能量密度$ \ sim $(neutrino smos $)^{4} $,微小的中微子质量,夸克和lept子的三生结构,lept子的三生结构,快速扩展的裸机量,裸机的幅度,裸机的幅度,等级,等等。

The geometric argument of the general relativity principle can be carried out on (unstable) Riemann space-time just inspired by nonlinear representation of supersymmetry(NLSUSY), where tangent space is specified by Grassmann degrees of freedom $ψ$ for SL(2,C) besides the ordinary Minkowski one $x^{a}$ for SO(1,3) and gives straightforwardly new Einstein-Hilbert(EH)-type action with global NLSUSY invariance(NLSUSYGR)) equipped with the cosmological term. Due to the NLSUSY nature of space-time NLSUSYGR would collapse(Big Collapse) spontaneously to ordinary E-H action of graviton, NLSUSY action of Nambu-Goldstone fermion $ψ$ and their gravitational interaction. Simultaneously the universal attractive gravitational force would constitute the NG fermion-composites corresponding to the eigenstates of liner-SUSY(LSUSY) super-Poincaré(sP) symmetry of space-time, which gives a new paradigm for the unification of space-time and matter, which can . bridge naturally the cosmology and the low energy particle physics and provides new insights into unsolved problems of cosmology, SM and mysterious relations between them, e.g. the space-time dimension {\it four}, the origin of SUSY breaking, the dark energy and dark matter, the dark energy density$\sim$( neutrino mass$)^{4}$, the tiny neutrino mass, the three-generations structure of quarks and leptons, the rapid expansion of space-time, the magnitude of bare gauge coupling constant, etc..

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