Institute for Advanced Study, Tsinghua University, Beijing 100084, China.
Phys Rev Lett. 2011 Nov 4;107(19):195305. doi: 10.1103/PhysRevLett.107.195305.
In this Letter we study both ground state properties and the superfluid transition temperature of a spin-1/2 Fermi gas across a Feshbach resonance with a synthetic spin-orbit coupling, using the mean-field theory and the exact solution of two-body problem. We show that a strong spin-orbit coupling can significantly enhance the pairing gap for negative scattering length a(s), due to increased density of state at Fermi surface. Strong spin-orbit coupling can also significantly enhance the superfluid transition temperature Tc to a sizable fraction of Fermi temperature when a(s) ≤ 0, while it suppresses Tc slightly for positive a(s). The interaction energy and pair size at resonance are also discussed.
在这封信件中,我们使用平均场理论和双体问题的精确解研究了在具有合成自旋轨道耦合的费希巴赫共振处穿过费希巴赫共振的自旋-1/2 费米气体的基态性质和超流转变温度。我们表明,强自旋轨道耦合可以由于费米面处的态密度增加而显著增强对负散射长度 a(s)的配对间隙。当 a(s) ≤ 0 时,强自旋轨道耦合也可以显著提高超流转变温度 Tc 到费米温度的相当大的分数,而当 a(s) > 0 时,它会略微抑制 Tc。我们还讨论了共振处的相互作用能和对尺寸。