Employing supervised machine learning techniques, we investigate the deconfinement phase transition within $4$-dimensional $SU(2)$ Yang-Mills (YM) theory, compactified on a small circle and endowed with center-stabilizing potential. This exploration encompasses scenarios both without and with matter in either the fundamental or adjoint representations. Central to our study is a profound duality relationship, intricately mapping the YM theory onto an XY-spin model with $\mathbb Z_p$-preserving perturbations. The parameter $p$ embodies the essence of the matter representation, with values of $p=1$ and $p=4$ for fundamental and adjoint representations, respectively, while $p=2$ corresponds to pure YM theory. The logistic regression method stru...
When studied at finite temperature, Yang-Mills theories in 3 + 1 dimensions display the presence of ...
Machine learning (ML) has been recently used as a very effective tool for the study and prediction o...
Çelik T, Engels J, Satz H. The latent heat of deconfinement in SU(3) Yang-Mills theory. Physics Lett...
International audienceWe study the machine learning techniques applied to the lattice gauge theory’s...
Recently, there has been an increased interest in the application of machine learning (ML) technique...
When studied at finite temperature, Yang-Mills theories in $3+1$ dimensions display the presence of ...
Machine learning offers an unprecedented perspective for the problem of classifying phases in conden...
We demonstrate, by means of a convolutional neural network, that the features learned in the two-dim...
Recently, there has been an increased interest in the application of machine learning (ML) technique...
Identifying phase transitions and classifying phases of matter is central to understanding the prope...
The problem of identifying the phase of a given system for a certain value of the temperature can be...
Abstract: We study finite-temperature N = 1 SU(2) super Yang-Mills theory, compactified on a spatial...
We present results from numerical lattice calculations of SU(4) Yang-Mills theory. This work has two...
Engels J, JERSAK J, KANAYA K, et al. THE CRITICAL EXPONENTS OF THE DECONFINEMENT TRANSITION IN SU(2)...
The Z(N) center symmetry plays an important role in the deconfinement phase transition of SU(N) Yang...
When studied at finite temperature, Yang-Mills theories in 3 + 1 dimensions display the presence of ...
Machine learning (ML) has been recently used as a very effective tool for the study and prediction o...
Çelik T, Engels J, Satz H. The latent heat of deconfinement in SU(3) Yang-Mills theory. Physics Lett...
International audienceWe study the machine learning techniques applied to the lattice gauge theory’s...
Recently, there has been an increased interest in the application of machine learning (ML) technique...
When studied at finite temperature, Yang-Mills theories in $3+1$ dimensions display the presence of ...
Machine learning offers an unprecedented perspective for the problem of classifying phases in conden...
We demonstrate, by means of a convolutional neural network, that the features learned in the two-dim...
Recently, there has been an increased interest in the application of machine learning (ML) technique...
Identifying phase transitions and classifying phases of matter is central to understanding the prope...
The problem of identifying the phase of a given system for a certain value of the temperature can be...
Abstract: We study finite-temperature N = 1 SU(2) super Yang-Mills theory, compactified on a spatial...
We present results from numerical lattice calculations of SU(4) Yang-Mills theory. This work has two...
Engels J, JERSAK J, KANAYA K, et al. THE CRITICAL EXPONENTS OF THE DECONFINEMENT TRANSITION IN SU(2)...
The Z(N) center symmetry plays an important role in the deconfinement phase transition of SU(N) Yang...
When studied at finite temperature, Yang-Mills theories in 3 + 1 dimensions display the presence of ...
Machine learning (ML) has been recently used as a very effective tool for the study and prediction o...
Çelik T, Engels J, Satz H. The latent heat of deconfinement in SU(3) Yang-Mills theory. Physics Lett...