SUPERFIELD

作品数:4被引量:1H指数:1
导出分析报告
相关领域:理学更多>>
相关期刊:《Communications in Theoretical Physics》《Journal of Applied Mathematics and Physics》《Journal of Modern Physics》更多>>
-

检索结果分析

结果分析中...
条 记 录,以下是1-4
视图:
排序:
Path Integral Quantization of Doubly Supersymmetric Model
《Journal of Applied Mathematics and Physics》2022年第2期245-253,共9页Hanaa Abdulkareem Elegla Nasser Ismail Farahat 
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 obt...
关键词:Hamilton-Jacobi Formalism Singular Lagrangian SUPERPARTICLE SUPERFIELD SUPERSYMMETRY 
Bosonization Approach and Novel Traveling Wave Solutions of the Superfield Gardner Equation被引量:1
《Journal of Applied Mathematics and Physics》2020年第3期443-455,共13页Shuangte Wang Hengguo Yu Chuanjun Dai Min Zhao 
In this paper, the bosonization of the superfield Gardner equation in the case of multifermionic parameters is presented and novel traveling wave solutions are extracted from the coupled bosonic equations by using the...
关键词:SUPERSYMMETRY SUPERFIELD GARDNER EQUATION Bosonizaion Traveling Wave Solutions 
Picard–Fuchs Equation for Glueball Superfield for the SO(N) Gauge Group
《Communications in Theoretical Physics》2016年第6期747-752,共6页Mohammad A.Ganjali 
In this paper, by using the factorization equation of the N= 2 supersymmetric gauge theory, we study N= 1 theory in Argyres–Douglas points. We suppose that all monopoles become massive. We derive general Picard–Fuch...
关键词:supersymmetry Seiberg–Witten curve glueball Picard–Fuchs 
The Explicit Pure Vector Superfield in Gauge Theories
《Journal of Modern Physics》2012年第8期682-685,共4页E. B. Manoukian 
An explicit expression of the pure vector superfield is derived in gauge theories in the Wess-Zumino gauge. A pure vector superfield means that the theta independent part of the superfield transforms as a Lorentz vect...
关键词:PURE VECTOR SUPERFIELD SUPERSYMMETRY Wess-Zumino GAUGE 
检索报告 对象比较 聚类工具 使用帮助 返回顶部