AbstractWe introduce a novel decomposition of the four-dimensional SU(2) gauge field. This decomposition realizes explicitly a symmetry between electric and magnetic variables, suggesting a duality picture between the corresponding phases. It also indicates that at large distances the Yang–Mills theory involves a three component unit vector field, a massive Lorentz vector field, and a neutral scalar field that condenses which yields the mass scale. Our results are consistent with the proposal that the physical spectrum of the theory contains confining strings which are tied into stable knotted solitons
Gauge/gravity duality is an important tool for learning about strongly coupled gauge theories. This ...
Gauge/gravity duality is an important tool for learning about strongly coupled gauge theories. This ...
AbstractThe N=4 super-Yang–Mills theory is covariantly determined by two scalar and one vector BRST ...
AbstractWe introduce a novel decomposition of the four-dimensional SU(2) gauge field. This decomposi...
In the low energy domain of four-dimensional SU(2) Yang-Mills theory the spin and the charge of the ...
AbstractWe give new descriptions of lattice SU(N) Yang–Mills theory in terms of new lattice variable...
We describe the magnetic phase of SU(N) (Formula presented.) super-Yang-Mills theories in the self-d...
We describe the magnetic phase of SU(N) (Formula presented.) super-Yang-Mills theories in the self-d...
We calculate the string tension and (part of) the glueball mass spectrum for SU (2) lattice gauge th...
We calculate the string tension and (part of) the glueball mass spectrum for SU (2) lattice gauge th...
We study the effect of a magnetic field on N $$ \mathcal{N} $$ = 2 super-Yang-Mills on S 3 at strong...
One of the still big problems in the Standard Model of particle physics is the problem of confinemen...
One of the still big problems in the Standard Model of particle physics is the problem of confinemen...
One of the still big problems in the Standard Model of particle physics is the problem of confinemen...
We study the effect of a magnetic field on N = 2 super-Yang-Mills on S 3 at strong coupling using th...
Gauge/gravity duality is an important tool for learning about strongly coupled gauge theories. This ...
Gauge/gravity duality is an important tool for learning about strongly coupled gauge theories. This ...
AbstractThe N=4 super-Yang–Mills theory is covariantly determined by two scalar and one vector BRST ...
AbstractWe introduce a novel decomposition of the four-dimensional SU(2) gauge field. This decomposi...
In the low energy domain of four-dimensional SU(2) Yang-Mills theory the spin and the charge of the ...
AbstractWe give new descriptions of lattice SU(N) Yang–Mills theory in terms of new lattice variable...
We describe the magnetic phase of SU(N) (Formula presented.) super-Yang-Mills theories in the self-d...
We describe the magnetic phase of SU(N) (Formula presented.) super-Yang-Mills theories in the self-d...
We calculate the string tension and (part of) the glueball mass spectrum for SU (2) lattice gauge th...
We calculate the string tension and (part of) the glueball mass spectrum for SU (2) lattice gauge th...
We study the effect of a magnetic field on N $$ \mathcal{N} $$ = 2 super-Yang-Mills on S 3 at strong...
One of the still big problems in the Standard Model of particle physics is the problem of confinemen...
One of the still big problems in the Standard Model of particle physics is the problem of confinemen...
One of the still big problems in the Standard Model of particle physics is the problem of confinemen...
We study the effect of a magnetic field on N = 2 super-Yang-Mills on S 3 at strong coupling using th...
Gauge/gravity duality is an important tool for learning about strongly coupled gauge theories. This ...
Gauge/gravity duality is an important tool for learning about strongly coupled gauge theories. This ...
AbstractThe N=4 super-Yang–Mills theory is covariantly determined by two scalar and one vector BRST ...