Zhang Ting, Jo Gyu-Boong
Department of Physics, Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong, China.
Sci Rep. 2015 Nov 4;5:16044. doi: 10.1038/srep16044.
We describe tunable optical sawtooth and zigzag lattices for ultracold atoms. Making use of the superlattice generated by commensurate wavelengths of light beams, tunable geometries including zigzag and sawtooth configurations can be realised. We provide an experimentally feasible method to fully control inter- (t) and intra- (t') unit-cell tunnelling in zigzag and sawtooth lattices. We analyse the conversion of the lattice geometry from zigzag to sawtooth, and show that a nearly flat band is attainable in the sawtooth configuration by means of tuning the lattice parameters. The bandwidth of the first excited band can be reduced up to 2% of the ground bandwidth for a wide range of lattice setting. A nearly flat band available in a tunable sawtooth lattice would offer a versatile platform for the study of interaction-driven quantum many-body states with ultracold atoms.
我们描述了用于超冷原子的可调谐光学锯齿形和之字形晶格。利用由光束的相称波长产生的超晶格,可以实现包括之字形和锯齿形配置在内的可调谐几何结构。我们提供了一种实验上可行的方法,以完全控制之字形和锯齿形晶格中的晶胞间隧穿(t)和晶胞内隧穿(t')。我们分析了晶格几何结构从之字形到锯齿形的转变,并表明通过调整晶格参数,在锯齿形配置中可以获得近平坦带。对于广泛的晶格设置,第一激发带的带宽可以降低到基态带宽的2%。可调谐锯齿形晶格中可用的近平坦带将为研究超冷原子的相互作用驱动量子多体态提供一个通用平台。