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G-theory: The generator of M-theory and supersymmetry

机译:G-理论:M-理论和超对称的发电机

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In string theory with ten dimensions, all Dp-branes are constructed from DO-branes whose action has two-dimensional brackets of Lie 2-algebra. Also, in M-theory, with 11 dimensions, all Mp-branes are built from MO-branes whose action contains three-dimensional brackets of Lie 3-algebra. In these theories, the reason for difference between bosons and fermions is unclear and especially in M-theory there is not any stable object like stable M3-branes on which our universe would be formed on it and for this reason it cannot help us to explain cosmological events. For this reason, we construct G-theory with M dimensions whose branes are formed from GO-branes with N-dimensional brackets. In this theory, we assume that at the beginning there is nothing. Then, two energies, which differ in their signs only, emerge and produce 2M degrees of freedom. Each two degrees of freedom create a new dimension and then M dimensions emerge. M-N of these degrees of freedom are removed by symmetrically compacting half of M-N dimensions to produce Lie-N-algebra. In fact, each dimension produces a degree of freedom. Consequently, by compacting M-N dimensions from M dimensions, N dimensions and N degrees of freedom is emerged. These N degrees of freedoms produce Lie-N-algebra. During this compactification, some dimensions take extra i and are different from other dimensions, which are known as time coordinates. By this compactification, two types of branes, Gp and anti-Gp-branes, are produced and rank of tensor fields which live on them changes from zero to dimension of brane. The number of time coordinates, which are produced by negative energy in anti-Gp-branes, is more sensible to number of times in Gp-branes. These branes are compactified anti-symmetrically and then fermionic superpartners of bosonic fields emerge and supersymmetry is born. Some of gauge fields play the role of graviton and gravitino and produce the supergravity. The question may arise that what is the physical reason wh
机译:在具有十个尺寸的字符串理论中,所有DP-Branes由Do-Branes构成,其动作具有2-agagebra的二维括号。此外,在M-理论中,具有11个尺寸,所有MP-BRANES都是由MO-BRANES构建的,其动作包含LIE 3-Algebra的三维括号。在这些理论中,玻色子和费米子之间的区别的原因尚不清楚,特别是在M-理论中,没有任何稳定的物体,如稳定的M3-扁平,我们的宇宙将形成在其上,因此它无法帮助我们解释宇宙事件。因此,我们用M尺寸构建G-理论,该M尺寸由具有N维支架的Go-Branes形成的铜色。在这个理论中,我们假设在开始时没有任何东西。然后,两个能量只在其迹象中不同,出现并产生2米的自由度。每两度自由度都会创建一个新的尺寸,然后是m尺寸出现。通过对称压实M-N尺寸的一半来消除这些自由度的M-N,以产生Lie-n-agagebra。实际上,每个维度都产生了一定程度的自由度。因此,通过从M尺寸的压实M-N尺寸,出现了N尺寸和N自由度。这些n自由度产生Lie-n-代数。在这种压缩过程中,一些尺寸取得额外的I,并且与其他尺寸不同,其被称为时间坐标。通过这种压缩,生产了两种类型的布朗,GP和抗GP-Branes,并依然存在于它们的张力场等级,从零到扁平的尺寸变化。通过抗GP-Branes中的负能量产生的时间坐标的数量在GP-BRANES中的次数更明显。这些布兰斯在抗对称的抗对称,然后是鲍苏氏野的Fermionic超级专家出现,超对称出生。一些规格田地扮演着格格顿和祖国的角色,并产生超级盛名。问题可能会产生什么是物理原因WH

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