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Light-induced unconventional Landau levels of ultracold fermions in a trilayer honeycomb lattice

Light-induced unconventional Landau levels of ultracold fermions in a trilayer honeycomb lattice
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摘要 The spectrum of cold fermionic atoms is studied in a trilayer honeycomb optical lattice subjected to a perpendicular effective magnetic field,which is created with optical means. In the low energy approximation,the spectrum shows unconventional Landau levels,which are proportional to the 3/2 power of integer numbers. The zoro modes exist and the quasiparticles are chiral. It is also proposed to identify the unconventional Landau levels via probing the dynamic structure factor of the system with Bragg spectroscopy. The spectrum of cold fermionic atoms is studied in a trilayer honeycomb optical lattice subjected to a perpendicular effective magnetic field,which is created with optical means. In the low energy approximation,the spectrum shows unconventional Landau levels,which are proportional to the 3/2 power of integer numbers. The zoro modes exist and the quasiparticles are chiral. It is also proposed to identify the unconventional Landau levels via probing the dynamic structure factor of the system with Bragg spectroscopy.
出处 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2010年第2期321-326,共6页 中国科学:物理学、力学、天文学(英文版)
基金 supported by the Teaching and Research Foundation for the Outstanding Young Faculty of Southeast University
关键词 cold ATOMS TRILAYER HONEYCOMB lattice UNCONVENTIONAL LANDAU levels cold atoms trilayer honeycomb lattice unconventional Landau levels
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