Normalization of the Ground State of the Supersymmetric Harmonic Oscillator

Ahmed Abi Ayad
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Abstract

Supersymmetry plays a main role in all current thinking about superstring theory. Indeed, many remarkable properties of string theory have been explained using supersymmetry as a tool. So far, there has been no unbroken supersymmetry observed in nature, and if nature is described by supersymmetry, it must be broken. Supersymmetry may be broken spontaneously at any order of perturbation theory or dynamically due to nonperturbative effects. To examine the methods of supersymmetry breaking, special attention is given to discuss the normalization of the ground state of the supersymmetric harmonic oscillator. This study explains that perturbation theory gives incorrect results for both the ground-state wave function and the energy spectrum and it fails to give an explanation to the supersymmetry breaking.
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超对称谐振子基态的归一化
超对称在目前所有关于超弦理论的思考中起着主要作用。事实上,弦理论的许多显著特性都是用超对称作为工具来解释的。到目前为止,在自然界中还没有观察到不破缺的超对称,如果用超对称来描述自然,那么它一定是破缺的。超对称可以在微扰理论的任意阶自发破缺或由于非微扰效应而动态破缺。为了检验超对称破缺的方法,特别讨论了超对称谐振子基态的归一化问题。本研究解释了微扰理论对基态波函数和能谱给出的结果不正确,不能解释超对称破缺。
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