Linked and knotted vortex loops have recently received a revival of interest. Such three-dimensional topological entities have been observed in both classical- and super-fluids, as well as in optical systems. In superconductors, they remained obscure due to their instability against collapse – unless supported by inhomogeneous magnetic field. Here we reveal a new kind of vortex matter in superconductors - the Josephson vortex loops - formed and stabilized in planar junctions or layered superconductors as a result of nontrivial cutting and recombination of Josephson vortices around the barriers for their motion. Engineering latter barriers opens broad perspectives on loop manipulation and control of other possible knotted/linked/entangled vo...
Spin-triplet Cooper pairs induced in ferromagnets form the centrepiece of the emerging field of supe...
Several Josephson ratchets designed as asymmetrically structured parallel-series arrays of Josephson...
In layered superconductors, Josephson junctions may be formed within the unit cell1,2,3 as a result ...
Linked and knotted vortex loops have recently received a revival of interest. Such three-dimensional...
© 2019, The Author(s). Josephson vortices play an essential role in superconducting quantum electron...
The possibility of a fast and precise Abrikosov vortex manipulation by a focused laser beam opens th...
Topological defects such as vortices, dislocations or domain walls define many important effects in ...
The Josephson effect is a kind of macroscopic quantum phenomenon that supercurrent flows through a J...
Proliferation of topological defects like vortices and dislocations plays a key role in the physics ...
In superconductors, vortices induced by a magnetic field are nucleated where some random fluctuation...
This book provides expert coverage of modern and novel aspects of the study of vortex matter, dynami...
Vortices are topological defects accounting for many important effects in superconductivity, superf...
The nucleation and dynamics of Josephson and Abrikosov vortices determine the critical currents of l...
We study the relation between Josephson dynamics and topological excitations in a dilute Bose-Einste...
Spin-triplet Cooper pairs induced in ferromagnets form the centrepiece of the emerging field of supe...
Several Josephson ratchets designed as asymmetrically structured parallel-series arrays of Josephson...
In layered superconductors, Josephson junctions may be formed within the unit cell1,2,3 as a result ...
Linked and knotted vortex loops have recently received a revival of interest. Such three-dimensional...
© 2019, The Author(s). Josephson vortices play an essential role in superconducting quantum electron...
The possibility of a fast and precise Abrikosov vortex manipulation by a focused laser beam opens th...
Topological defects such as vortices, dislocations or domain walls define many important effects in ...
The Josephson effect is a kind of macroscopic quantum phenomenon that supercurrent flows through a J...
Proliferation of topological defects like vortices and dislocations plays a key role in the physics ...
In superconductors, vortices induced by a magnetic field are nucleated where some random fluctuation...
This book provides expert coverage of modern and novel aspects of the study of vortex matter, dynami...
Vortices are topological defects accounting for many important effects in superconductivity, superf...
The nucleation and dynamics of Josephson and Abrikosov vortices determine the critical currents of l...
We study the relation between Josephson dynamics and topological excitations in a dilute Bose-Einste...
Spin-triplet Cooper pairs induced in ferromagnets form the centrepiece of the emerging field of supe...
Several Josephson ratchets designed as asymmetrically structured parallel-series arrays of Josephson...
In layered superconductors, Josephson junctions may be formed within the unit cell1,2,3 as a result ...