Using an extended Nambu-Jona-Lasinio model as a low-energy effective model of QCD, we show that the vacuum in a strong external magnetic field (stronger than 10(16) T) experiences a spontaneous phase transition to an electromagnetically superconducting state. The unexpected superconductivity of, basically, empty space is induced by emergence of quark-antiquark vector condensates with quantum numbers of electrically charged rho mesons. The superconducting phase possesses an anisotropic inhomogeneous structure similar to a periodic Abrikosov lattice in a type-II superconductor. The superconducting vacuum is made of a new type of vortices which are topological defects in the charged vector condensates. The superconductivity is realized along t...
In the background of a sufficiently strong magnetic field the vacuum was suggested to become an idea...
We show that the electromagnetic superconductivity of vacuum in strong magnetic field background is ...
In a background of a very strong magnetic field a quantum vacuum may turn into a new phase character...
4 pages, 1 figure; uses RevTeX 4.1International audienceUsing an extended Nambu--Jona-Lasinio model ...
37 pages, 14 figures, to appear in Lect. Notes Phys. "Strongly interacting matter in magnetic fields...
International audienceWe discuss superconducting phases of vacuum induced by strong magnetic field i...
Recently it was shown that vacuum in a background of a strong enough magnetic field becomes an elect...
3 pages, talk at the conference "Quark Confinement and the Hadron Spectrum IX", 30 Aug - 3 Sep 2010,...
10 pages, 5 figures, contribution to the proceedings of the workshop "The many faces of QCD", 2-5 No...
6 pages, 2 figures. Talk given at Sixth International Conference on Quarks and Nuclear Physics QNP20...
7 pages, 4 figures. Talk presented at QCD@Work 2012: International Workshop on QCD - Theory and Expe...
We show that in a sufficiently strong magnetic field the QCD vacuum may undergo a transition to a ne...
4 pages, 4 figures, uses RevTeX 4.1International audienceUsing numerical simulations of SU(2) lattic...
AbstractUsing numerical simulations of quenched SU(2) gauge theory we demonstrate that an external m...
A superconductor is a material that conducts electric current with no resistance. Superconduc-tivity...
In the background of a sufficiently strong magnetic field the vacuum was suggested to become an idea...
We show that the electromagnetic superconductivity of vacuum in strong magnetic field background is ...
In a background of a very strong magnetic field a quantum vacuum may turn into a new phase character...
4 pages, 1 figure; uses RevTeX 4.1International audienceUsing an extended Nambu--Jona-Lasinio model ...
37 pages, 14 figures, to appear in Lect. Notes Phys. "Strongly interacting matter in magnetic fields...
International audienceWe discuss superconducting phases of vacuum induced by strong magnetic field i...
Recently it was shown that vacuum in a background of a strong enough magnetic field becomes an elect...
3 pages, talk at the conference "Quark Confinement and the Hadron Spectrum IX", 30 Aug - 3 Sep 2010,...
10 pages, 5 figures, contribution to the proceedings of the workshop "The many faces of QCD", 2-5 No...
6 pages, 2 figures. Talk given at Sixth International Conference on Quarks and Nuclear Physics QNP20...
7 pages, 4 figures. Talk presented at QCD@Work 2012: International Workshop on QCD - Theory and Expe...
We show that in a sufficiently strong magnetic field the QCD vacuum may undergo a transition to a ne...
4 pages, 4 figures, uses RevTeX 4.1International audienceUsing numerical simulations of SU(2) lattic...
AbstractUsing numerical simulations of quenched SU(2) gauge theory we demonstrate that an external m...
A superconductor is a material that conducts electric current with no resistance. Superconduc-tivity...
In the background of a sufficiently strong magnetic field the vacuum was suggested to become an idea...
We show that the electromagnetic superconductivity of vacuum in strong magnetic field background is ...
In a background of a very strong magnetic field a quantum vacuum may turn into a new phase character...