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Two-dimensional supersymmetry: From SUSY quantum mechanics to integrable classical models

机译:二维超对称:从SUSY量子力学到可积分经典模型

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Two known two-dimensional SUSY quantum mechanical constructions-the direct generalization of SUSY with first-order supercharges and higher-order SUSY with second-order supercharges-are combined for a class of 2-dim quantum models, which are not amenable to separation of variables. The appropriate classical limit of quantum systems allows us to construct SUSY-extensions of original classical scalar Hamiltonians. Special emphasis is placed on the symmetry properties of the models thus obtained-the explicit expressions of quantum symmetry operators and of classical integrals of motion are given for all (scalar and matrix) components of SUSY-extensions. Using Grassmanian variables, the symmetry operators and classical integrals of motion are written in a unique form for the whole Superhamiltonian. The links of the approach to the classical Hamilton-Jacobi method for related "flipped" potentials are established. (c) 2006 Elsevier Inc. All rights reserved.
机译:对于一类2-dim量子模型,将两种已知的二维SUSY量子力学构造(具有一阶超级电荷的SUSY的直接推广和具有二阶超级电荷的高阶SUSY的组合)组合在一起,这些模型不适合分离变量。量子系统的适当经典极限使我们能够构造原始经典标量哈密顿量的SUSY扩展。特别强调了这样获得的模型的对称性-SUSY扩展的所有(标量和矩阵)分量都给出了量子对称算符和运动经典积分的显式表达式。使用格拉斯曼变量,以对称形式对运动的经典算符和运动积分以整个超级哈密尔顿方程的唯一形式编写。建立了与相关“翻转”电位的经典汉密尔顿-雅各比方法的方法的联系。 (c)2006 Elsevier Inc.保留所有权利。

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