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Fulde-Ferrell-Like Molecular States in Spin-Orbit Coupled Ultracold Fermi Gases

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【作者】 叶冲傅立斌

【Author】 Chong Ye;Li-Bin Fu;National Laboratory of Science and Technology on Computational Physics,Institute of Applied Physics and Computational Mathematics;Graduate School,China Academy of Engineering Physics;HEDPS,CAPT,and CICIFSA MoE,Peking University;

【机构】 National Laboratory of Science and Technology on Computational Physics,Institute of Applied Physics and Computational MathematicsGraduate School,China Academy of Engineering PhysicsHEDPS,CAPT,and CICIFSA MoE,Peking University

【摘要】 We study the molecular state in three-component Fermi gases with a single impurity of 6Li immersing in a no-interacting Fermi sea of 40K in the presence of an equal weight combination of Rashba-type and Dresselhaustype spin-orbit coupling. In the region where the Fermi sea has two disjointed Fermi surfaces, we find that there are two Fulde–Ferrell-like molecular states with dominating contributions from the lower helicity branch. Decreasing the scattering length or the spin-orbit coupled Fermi energy, we find the Fulde–Ferrell-like molecular state with small center-of-mass momentum is always energy favored and the other one will suddenly disappear.

【Abstract】 We study the molecular state in three-component Fermi gases with a single impurity of 6Li immersing in a no-interacting Fermi sea of 40K in the presence of an equal weight combination of Rashba-type and Dresselhaustype spin-orbit coupling. In the region where the Fermi sea has two disjointed Fermi surfaces, we find that there are two Fulde–Ferrell-like molecular states with dominating contributions from the lower helicity branch. Decreasing the scattering length or the spin-orbit coupled Fermi energy, we find the Fulde–Ferrell-like molecular state with small center-of-mass momentum is always energy favored and the other one will suddenly disappear.

【关键词】 spin-orbit coupling
【Key words】 spin-orbit coupling
【基金】 Supported by the National Basic Research Program of China(973 Program)under Grant Nos.2013CBA01502,2013CB834100;the National Natural Science Foundation of China under Grant Nos.11374040,11475027,11575027,11274051,and 11075020
  • 【文献出处】 Communications in Theoretical Physics ,理论物理通讯(英文版) , 编辑部邮箱 ,2017年08期
  • 【分类号】O469
  • 【下载频次】3
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