1–5 Sept 2026
University of Sussex
Europe/London timezone

Functional Renormalization and relativistic Luttinger fermions

5 Sept 2026, 12:00
30m
Large Lecture Theatre (Jubilee Building)

Large Lecture Theatre

Jubilee Building

Invited Plenary

Speaker

Holger Gies (FSU Jena)

Description

We study the renormalization flow of relativistic Luttinger fermions as a new ingredient for the construction of UV-complete quantum field theories. The resulting fermion fields exhibit a canonical scaling different from Dirac fermions and thus support the construction of novel relativistic and perturbatively renormalizable, interacting quantum field theories in four spacetime dimensions. In particular, new asymptotically free self-interacting field theories can be identified, representing first examples of high-energy complete quantum field theories based on purely fermionic matter degrees of freedom. As examples, we discuss models which undergo dimensional transmutation and low-energy condensate formation with scalar excitations on top of the condensate. A corresponding Yukawa model exhibits features similar to self-organized criticality with a natural separation of low-energy observables from high energy initial scales without the need for any fine-tuning. We also critically examine the analytic structure of the Luttinger-fermionic propagator in the various gapped phases and discuss possible consequences for asymptotic states.

Affiliation FSU Jena
Career status Senior

Author

Holger Gies (FSU Jena)

Presentation materials

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