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Tunable Range Interactions and Multi-Roton Excitations for Bosons in a Bose-Fermi Mixture with Optical Lattices

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【作者】 冯超陈宇

【Author】 Chao Feng;Yu Chen;Institute for Advanced Study, Tsinghua University;Department of Physics, Capital Normal University;

【通讯作者】 陈宇;

【机构】 Institute for Advanced Study, Tsinghua UniversityDepartment of Physics, Capital Normal University

【摘要】 In this article, we discuss a method to control the long-range interactions between bosons in a threedimensional Bose-Fermi mixture with the help of optical lattices on fermions. We find the range and the peaked momentum of the fermion-mediated interactions can be tuned by the optical lattice depth and the fermion density.If the fermion density is close to half-filling, roton excitations can be generated with weak Bose-Fermi interactions.Further, if the fermions are not exact at half-filling, multi-roton structure may emerge, implying competing density orders. Therefore, tuning the lattice depth and the fermion density in a Bose-Fermi mixture serves as an effective way to control the interaction range and resonant momentum between bosons.

【Abstract】 In this article, we discuss a method to control the long-range interactions between bosons in a threedimensional Bose-Fermi mixture with the help of optical lattices on fermions. We find the range and the peaked momentum of the fermion-mediated interactions can be tuned by the optical lattice depth and the fermion density.If the fermion density is close to half-filling, roton excitations can be generated with weak Bose-Fermi interactions.Further, if the fermions are not exact at half-filling, multi-roton structure may emerge, implying competing density orders. Therefore, tuning the lattice depth and the fermion density in a Bose-Fermi mixture serves as an effective way to control the interaction range and resonant momentum between bosons.

【基金】 Supported by National Natural Science Foundation of China under Grant Nos.11604225,11734010;Beijing Natural Science Foundation(Z180013);Foundation of Beijing Education Committees under Grant No.KM201710028004
  • 【文献出处】 Communications in Theoretical Physics ,理论物理(英文版) , 编辑部邮箱 ,2019年07期
  • 【分类号】O562
  • 【下载频次】11
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