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Path Integral Quantization of Doubly Supersymmetric Model

Path Integral Quantization of Doubly Supersymmetric Model
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摘要 The Hamilton-Jacobi formalism is used to discuss the path integral quantization of the double supersymmetric models with the spinning superparticle in the component and superfield form. The equations of motion are obtained as total differential equations in many variables. The equations of motion are integrable, and the path integral is obtained as an integration over the canonical phase space coordinates. The Hamilton-Jacobi formalism is used to discuss the path integral quantization of the double supersymmetric models with the spinning superparticle in the component and superfield form. The equations of motion are obtained as total differential equations in many variables. The equations of motion are integrable, and the path integral is obtained as an integration over the canonical phase space coordinates.
作者 Hanaa Abdulkareem Elegla Nasser Ismail Farahat Hanaa Abdulkareem Elegla;Nasser Ismail Farahat(Physics Department, Islamic University of Gaza, Gaza, Palestine)
机构地区 Physics Department
出处 《Journal of Applied Mathematics and Physics》 2022年第2期245-253,共9页 应用数学与应用物理(英文)
关键词 Hamilton-Jacobi Formalism Singular Lagrangian SUPERPARTICLE SUPERFIELD SUPERSYMMETRY Hamilton-Jacobi Formalism Singular Lagrangian Superparticle Superfield Supersymmetry
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