Institute for Advanced Study, Tsinghua University, Beijing 100084, China.
Institute for Advanced Study, Tsinghua University, Beijing 100084, China and Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China.
Phys Rev Lett. 2014 Jan 10;112(1):013201. doi: 10.1103/PhysRevLett.112.013201.
In this Letter we address the issue of how synthetic spin-orbit (SO) coupling can strongly affect three-body physics in ultracold atomic gases. We consider a system which consists of three fermionic atoms, including two spinless heavy atoms and one spin-1/2 light atom subjected to an isotropic SO coupling. We find that SO coupling can induce universal three-body bound states with a negative s-wave scattering length at a smaller mass ratio, where no trimer bound state can exist if in the absence of SO coupling. The energies of these trimers are independent of the high-energy cutoff, and therefore they are universal ones. Moreover, the resulting atom-dimer resonance can be effectively controlled by SO coupling strength. Our results can be applied to systems like a 6Li and 40K mixture.
在这封信中,我们探讨了如何通过合成自旋轨道(SO)耦合强烈影响超冷原子气体中的三体物理。我们考虑了一个由三个费米子原子组成的系统,其中包括两个无自旋的重原子和一个受各向同性 SO 耦合作用的自旋-1/2 轻原子。我们发现,SO 耦合可以在较小的质量比下诱导具有负 s 波散射长度的通用三体束缚态,如果没有 SO 耦合,这种三体束缚态是不存在的。这些三体的能量与高能截止无关,因此它们是通用的。此外,由此产生的原子-二聚体共振可以通过 SO 耦合强度有效控制。我们的结果可以应用于 6Li 和 40K 混合物等系统。