Abstract Building on recent advances in the understanding of gauge-Yukawa theories we explore possibilities to UV-complete the Standard Model in an asymptotically safe manner. Minimal extensions are based on a large flavor sector of additional fermions coupled to a scalar singlet matrix field. We find that asymptotic safety requires fermions in higher representations of SU(3) C × SU(2) L . Possible signatures at colliders are worked out and include R-hadron searches, diboson signatures and the evolution of the strong and weak coupling constants
I report on recent work to embed the Standard Model within an asymptotically safe framework. This a...
The nature of dark matter and the fundamental quantum structure of spacetime could be directly linke...
We present a consistent embedding of the matter and gauge content of the Standard Model into an unde...
We perform a comprehensive search for Standard Model extensions inspired by asymptotic safety. Our m...
We consider theories with a large number N-F of charged fermions and compute the renormalization gro...
We provide an asymptotically safe Pati-Salam embedding of the standard model. Safety is achieved by ...
We construct asymptotically safe extensions of the standard model by adding gauged vectorlike fermio...
The behaviourr of quantum field theories at different energy scales is encoded by its renormalisatio...
We investigate asymptotically safe extensions of the Standard Model with new matter fields arising i...
We classify the weakly interacting fixed points of general gauge theories coupled to matter and expl...
In this work we explore the collider prospects for the asymptotic safety scenario being realized as ...
The framework of trans-Planckian asymptotic safety has been shown to generate phenomenological predi...
Abstract Asymptotically safe extensions of the Standard Model have been searched for by adding vecto...
Abstract: It was recently shown that certain perturbatively accessible, non-supersymmetric gauge-Yuk...
Abstract We explore the Renormalization Group flow of massive uncharged fermions — a candidate for d...
I report on recent work to embed the Standard Model within an asymptotically safe framework. This a...
The nature of dark matter and the fundamental quantum structure of spacetime could be directly linke...
We present a consistent embedding of the matter and gauge content of the Standard Model into an unde...
We perform a comprehensive search for Standard Model extensions inspired by asymptotic safety. Our m...
We consider theories with a large number N-F of charged fermions and compute the renormalization gro...
We provide an asymptotically safe Pati-Salam embedding of the standard model. Safety is achieved by ...
We construct asymptotically safe extensions of the standard model by adding gauged vectorlike fermio...
The behaviourr of quantum field theories at different energy scales is encoded by its renormalisatio...
We investigate asymptotically safe extensions of the Standard Model with new matter fields arising i...
We classify the weakly interacting fixed points of general gauge theories coupled to matter and expl...
In this work we explore the collider prospects for the asymptotic safety scenario being realized as ...
The framework of trans-Planckian asymptotic safety has been shown to generate phenomenological predi...
Abstract Asymptotically safe extensions of the Standard Model have been searched for by adding vecto...
Abstract: It was recently shown that certain perturbatively accessible, non-supersymmetric gauge-Yuk...
Abstract We explore the Renormalization Group flow of massive uncharged fermions — a candidate for d...
I report on recent work to embed the Standard Model within an asymptotically safe framework. This a...
The nature of dark matter and the fundamental quantum structure of spacetime could be directly linke...
We present a consistent embedding of the matter and gauge content of the Standard Model into an unde...