Möttönen Mikko, Pietilä Ville, Virtanen Sami M M
Laboratory of Physics, Helsinki University of Technology, P. O. Box 5100, FI-02015 TKK, Finland.
Phys Rev Lett. 2007 Dec 21;99(25):250406. doi: 10.1103/PhysRevLett.99.250406.
The formation of vortices by topological phase engineering has been realized experimentally to create the first two- and four-quantum vortices in dilute atomic Bose-Einstein condensates. We consider a similar system, but in addition to the Ioffe-Pritchard magnetic trap we employ an additional hexapole field. By controlling cyclically the strengths of these magnetic fields, we show that a fixed amount of vorticity can be added to the condensate in each cycle. In an adiabatic operation of this vortex pump, the appearance of vortices into the condensate is interpreted as the accumulation of a local Berry phase. Our design can be used as an experimentally realizable vortex source for possible vortex-based applications of dilute Bose-Einstein condensates.
通过拓扑相位工程实现涡旋的形成已在实验中得以实现,从而在稀薄原子玻色 - 爱因斯坦凝聚体中创造出首个双量子和四量子涡旋。我们考虑一个类似的系统,但除了伊offe - Pritchard磁阱外,我们还采用了一个额外的六极场。通过周期性地控制这些磁场的强度,我们表明在每个周期中可以向凝聚体添加固定量的涡度。在这个涡旋泵的绝热操作中,凝聚体中涡旋的出现被解释为局部贝里相位的积累。我们的设计可以用作一个实验上可实现的涡旋源,用于稀薄玻色 - 爱因斯坦凝聚体可能的基于涡旋的应用。