arXiv · hep-th/9401012
Flavor-Dependence and Higher Orders of Gauge-Independent Solutions in Strong Coupling Gauge Theory
Abstract
The fermion flavor $N_f$ dependence of non-perturbative solutions in the strong coupling phase of the gauge theory is reexamined based on the interrelation between the inversion method and the Schwinger-Dyson equation approach. Especially we point out that the apparent discrepancy on the value of the critical coupling in QED will be resolved by taking into account the higher order corrections which inevitably lead to the flavor-dependence. In the quenched QED, we conclude that the gauge-independent critical point $α_c=2π/3$ obtained by the inversion method to the lowest order will be reduced to the result $α_c=π/3$ of the Schwinger-Dyson equation in the infinite order limit, but its convergence is quite slow. This is shown by adding the chiral-invariant four-fermion interaction.
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Kei-Ichi Kondo, Takuya Iizuka, Eiji Tanaka, Toru Ebihara. 1994-01-06. Flavor-Dependence and Higher Orders of Gauge-Independent Solutions in Strong Coupling Gauge Theory. https://doi.org/10.1016/0370-2693(94)90035-3
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