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arXiv:hep-th/0107219·v6·High Energy Physics — Theory

The Gauge Technique in QED_{2+1}

Y. Hoshino🇯🇵

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Abstract

The Gauge Technique has been applied to QED in the quenched case with infrared subtraction. The behaviour of the fermion propagator near the threshold is then found to be \[ S(p)\to \frac{(\gamma \cdot p+m)}{(p^{2}-m^{2})}(\frac{p^{2}-m^{2}}{% 2m^{2}})^{\zeta}\exp (-\frac{\eta \varsigma}{2}), \] where and this is gauge invariant except the exponential factor. We also find a spectral function in the Landau and Yennie like gauge. The propagators are expressed in terms of explicitly .The vacuum expectation value is gauge dependent . Thus dynamical mass generation does not occur.

Comments: 11 pages, Latex, no figures

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