论文标题

用dyson-schwinger方程来查看QED:基本方程,沃德 - 塔卡哈西身份和两光量 - 二线不可减至的顶点

Looking at QED with Dyson-Schwinger equations: basic equations, Ward-Takahashi identities and the two-photon-two-fermion irreducible vertex

论文作者

Oliveira, Orlando, Macedo, Helena Lessa, Terin, Rodrigo Carmo

论文摘要

在Minkowski Spacetime中,在Minkowski SpaceTime中,一组截断的dyson-schwinger方程式允许探索超出其扰动解决方案的QED,用于一般线性协变量仪表。 The minimal set includes the equations for the fermion and photon propagators, the photon-fermion vertex, and the two-photon-two-fermion one-particle-irreducible diagram.如果前三个方程式是精确的,则要构建一组封闭的方程式,则将两光量 - 两倍方程式截断,忽略了大量外部腿的绿色功能的贡献。结果表明,在小耦合常数的极限中,两光子两杆fermion顶点的截短方程重现了最低的扰动结果。此外,该方程式允许定义一个迭代过程,以计算耦合常数中的高阶校正。在柔软的光子限制中得出并求解了两光子两杆二线不可约的顶点的病房 - 塔卡哈西身份,其中一个光子矩消失的一个消失,在低光子矩量极限和一般运动学。塔卡哈西病房身份的解决方案决定了两光子两杆 - 特里米的纵向成分,但建议使用dyson-schwinger方程来确定此不可减至图的横向部分。考虑到QED顶点的简化版本,两光子两二二氧化碳DSE dse以沉重的费用极限求解。讨论了该不可约后顶点对低能有效的光子特性顶点的贡献,并根据费米昂繁殖函数计算生成的费米子操作员。

A minimal truncated set of the integral Dyson-Schwinger equations, in Minkowski spacetime, that allows to explore QED beyond its perturbative solution is derived for general linear covariant gauges. The minimal set includes the equations for the fermion and photon propagators, the photon-fermion vertex, and the two-photon-two-fermion one-particle-irreducible diagram. If the first three equations are exact, to build a closed set of equations, the two-photon-two-fermion equation is truncated ignoring the contribution of Green functions with large number of external legs. It is shown that the truncated equation for the two-photon-two-fermion vertex reproduces the lowest-order perturbative result in the limit of the small coupling constant. Furthermore, this equation allows to define an iterative procedure to compute higher order corrections in the coupling constant. The Ward-Takahashi identity for the two-photon-two-fermion irreducible vertex is derived and solved in the soft photon limit, where one of the photon momenta vanish, in the low photon momenta limit and for general kinematics. The solution of the Ward-Takahashi identity determines the longitudinal component of the two-photon-two-fermion irreducible vertex, while it is proposed to use the Dyson-Schwinger equation to determine the transverse part of this irreducible diagram. The two-photon-two-fermion DSE is solved in heavy fermion limit, considering a simplified version of the QED vertices. The contribution of this irreducible vertex to a low-energy effective photon-fermion vertex is discussed and the fermionic operators that are generated are computed in terms of the fermion propagator functions.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源