Departament de Física, Universitat de les Illes Balears, E-07122 Palma de Mallorca, Spain.
Phys Rev Lett. 2011 Nov 4;107(19):196801. doi: 10.1103/PhysRevLett.107.196801. Epub 2011 Nov 1.
We demonstrate that curvature-induced spin-orbit coupling induces a 0-π transition in the Josephson current through a carbon nanotube quantum dot coupled to superconducting leads. In the noninteracting regime, the transition can be tuned by applying a parallel magnetic field near the critical field where orbital states become degenerate. Moreover, the interplay between charging and spin-orbit effects in the Coulomb blockade and cotunneling regimes leads to a rich phase diagram with well-defined (analytical) boundaries in parameter space. Finally, the 0 phase always prevails in the Kondo regime. Our calculations are relevant in view of recent experimental advances in transport through ultraclean carbon nanotubes.
我们证明了曲率诱导的自旋轨道耦合会在通过与超导引线耦合的碳纳米管量子点中诱导约瑟夫森电流的 0-π 转变。在非相互作用的情况下,可以通过在轨道态变得简并的临界磁场附近施加平行磁场来调节转变。此外,在库仑阻塞和隧道效应区域中的充电和自旋轨道效应之间的相互作用导致在参数空间中具有明确(分析)边界的丰富相图。最后,在近藤区域中,0 相位总是占主导地位。鉴于通过超清洁碳纳米管的传输方面的最新实验进展,我们的计算是相关的。