论文标题

重态的光谱流

Renormalised spectral flows

论文作者

Braun, Jens, Chen, Yong-rui, Fu, Wei-jie, Geißel, Andreas, Horak, Jan, Huang, Chuang, Ihssen, Friederike, Pawlowski, Jan M., Reichert, Manuel, Rennecke, Fabian, Tan, Yang-yang, Töpfel, Sebastian, Wessely, Jonas, Wink, Nicolas

论文摘要

我们在实际和想象的时间中得出了量子场理论的重量化有限功能流程方程,该方程融合了重量级化条件的比例转换,因此实施了流动的重态化。在一般的非扰动截断方案中,对于不实施对流动中环的红外抑制的正则化方案,这些流程显然是有限的。具体而言,该公式包括使用频谱Callan-Symanzik截止的有效作用的有限功能流,因此可以访问Lorentz不变光谱流。功能设置是完全非扰动性的,允许对一般理论进行光谱处理。特别是,这包括不承认扰动性重态化的理论,例如渐近安全的理论。最后,简要讨论了洛伦兹不变光谱函数重量级化组的应用,从真实的标量和Yukawa理论到衡量理论和量子引力。

We derive renormalised finite functional flow equations for quantum field theories in real and imaginary time that incorporate scale transformations of the renormalisation conditions, hence implementing a flowing renormalisation. The flows are manifestly finite in general non-perturbative truncation schemes also for regularisation schemes that do not implement an infrared suppression of the loops in the flow. Specifically, this formulation includes finite functional flows for the effective action with a spectral Callan-Symanzik cutoff, and therefore gives access to Lorentz invariant spectral flows. The functional setup is fully non-perturbative and allows for the spectral treatment of general theories. In particular, this includes theories that do not admit a perturbative renormalisation such as asymptotically safe theories. Finally, the application of the Lorentz invariant spectral functional renormalisation group is briefly discussed for theories ranging from real scalar and Yukawa theories to gauge theories and quantum gravity.

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