In this work we study the low-energy physics of Yang-Mills theory (YM) coupled to adjoint matter by means of lattice Monte Carlo simulations. A main ingredient of our computations is the YM gradient flow (GF). The kernel of the flow operator smoothens the fields in such a way that correlators of local operators can be computed avoiding divergences and extra multiplicative renormalisations. The flow kernel can also be related to a renormalisation group (RG) transformation. This property allows to compute the scaling dimensions of operators with respect to variations of the energy scale. We exploit these two properties of the GF in order to study non-perturbative properties of YM with adjoint fermions (adjoint QCD). First, we study the case w...
We present the updated results of the infrared behavior of the SU(2) model with 6 and 8 fundamental ...
We present a lattice study of the equation of state in Yang-Mills theory based on the exceptional G ...
When studied at finite temperature, Yang-Mills theories in 3 + 1 dimensions display the presence of ...
In this work we study the low-energy physics of Yang-Mills theory (YM) coupled to adjoint matter by ...
In this work we investigate the infrared behavior of a Yang-Mills theory coupled to a massless fermi...
The realization of center and chiral symmetries in N = 1 super Yang-Mills theory (SYM) is investigat...
Non-Abelian gauge theories with fermions transforming in the adjoint representation of the gauge gro...
This work is a step towards merging the ideas that arise from semi-classical methods in continuum QF...
We perform the step-scaling investigation of the running coupling constant, using the gradient-flow ...
Supersymmetric Yang -Mills (SYM) theories in four dimensions exhibit many interesting nonperturbativ...
In this work we present the results of a numerical investigation of SU(2) gauge theory with N-f = 3/...
The Yang-Mills gradient flow for QCD-like theories is generalized by including a fermionic matter te...
Supersymmetry provides a well-established theoretical framework for extensions of the standard model...
We present the updated results of the infrared behavior of the SU(2) model with 6 and 8 fundamental ...
We present a lattice study of the equation of state in Yang-Mills theory based on the exceptional G ...
When studied at finite temperature, Yang-Mills theories in 3 + 1 dimensions display the presence of ...
In this work we study the low-energy physics of Yang-Mills theory (YM) coupled to adjoint matter by ...
In this work we investigate the infrared behavior of a Yang-Mills theory coupled to a massless fermi...
The realization of center and chiral symmetries in N = 1 super Yang-Mills theory (SYM) is investigat...
Non-Abelian gauge theories with fermions transforming in the adjoint representation of the gauge gro...
This work is a step towards merging the ideas that arise from semi-classical methods in continuum QF...
We perform the step-scaling investigation of the running coupling constant, using the gradient-flow ...
Supersymmetric Yang -Mills (SYM) theories in four dimensions exhibit many interesting nonperturbativ...
In this work we present the results of a numerical investigation of SU(2) gauge theory with N-f = 3/...
The Yang-Mills gradient flow for QCD-like theories is generalized by including a fermionic matter te...
Supersymmetry provides a well-established theoretical framework for extensions of the standard model...
We present the updated results of the infrared behavior of the SU(2) model with 6 and 8 fundamental ...
We present a lattice study of the equation of state in Yang-Mills theory based on the exceptional G ...
When studied at finite temperature, Yang-Mills theories in 3 + 1 dimensions display the presence of ...