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A nonperturbative light-front coupled-cluster method

机译:非稳健光前耦合簇法

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The nonperturbative Hamiltonian eigenvalue problem for bound states of a quantum field theory is formulated in terms of Dirac's light-front coordinates and then approximated by the exponential-operator technique of the many-body coupled-cluster method. This approximation eliminates any need for the usual approximation of Fock-space truncation. Instead, the exponentiated operator is truncated, and the terms retained are determined by a set of nonlinear integral equations. These equations are solved simultaneously with an effective eigenvalue problem in the valence sector, where the number of constituents is small. Matrix elements can be calculated, with extensions of techniques from standard coupled-cluster theory, to obtain form factors and other observables.
机译:在DIRAC的光前坐标方面配制了量子场理论的束缚状态的非触发哈密顿的特征值问题,然后通过许多身体耦合簇方法的指数操作技术近似。该近似消除了对普通空间截断的通常近似的任何需要。相反,指数化的运算符被截断,并且保留的术语由一组非线性整体方程确定。这些等式在价扇区中同时解决了具有有效的特征值问题,其中成分的数量很小。可以计算矩阵元件,具有来自标准耦合簇理论的技术的扩展,以获得形式因素和其他可观察到。

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