Institute for Integrative Nanosciences, IFW Dresden, Helmholtzstrasse 20, D-01069 Dresden, Germany.
Nano Lett. 2012 Mar 14;12(3):1282-7. doi: 10.1021/nl203765f. Epub 2012 Feb 22.
As shown theoretically, geometry determines the dynamics of vortices in the presence of transport currents in open superconductor micro- and nanotubes subject to a magnetic field orthogonal to the axis. In low magnetic fields, vortices nucleate periodically at one edge of the tube, subsequently move along the tube under the action of the Lorentz force and denucleate at the opposite edge of the tube. In high magnetic fields, vortices pass along rows closest to the slit. Intervortex correlations lead to an attraction between vortices moving at opposite sides of a tube. Open superconductor nanotubes provide a tunable generator of superconducting vortices for fluxon-based quantum computing.
从理论上表明,在磁场与超导微管和纳米管的轴正交的情况下,存在传输电流时,几何形状决定了涡旋的动力学。在低磁场中,涡旋在管的一端周期性地成核,随后在洛伦兹力的作用下沿管移动,并在管的另一端去核。在高磁场中,涡旋沿最接近狭缝的行通过。涡旋之间的相关性导致在管的相对侧移动的涡旋之间相互吸引。开管超导纳米管为磁通量子计算提供了可调谐的超导涡旋发生器。