Realization of a stroboscopic optical lattice for cold atoms with subwavelength spacing.

T-C Tsui, Y Wang, S Subhankar, J V Porto, S L Rolston
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Abstract

Optical lattices are typically created via the ac Stark shift and are limited by diffraction to periodicities ⩾ λ/2, where λ is the wavelength of light used to create them. Lattices with smaller periodicities may be useful for many-body physics with cold atoms and can be generated by stroboscopic application of a phase-shifted lattice with subwavelength features. Here we demonstrate a λ/4-spaced lattice by stroboscopically applying optical Kronig-Penney-like potentials which are generated using spatially dependent dark states. We directly probe the periodicity of the λ/4-spaced lattice by measuring the average probability density of the atoms loaded into the ground band of the lattice. We measure lifetimes of atoms in this lattice and discuss the mechanisms that limit the applicability of this stroboscopic approach.

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实现亚波长间距冷原子频闪光栅。
光学晶格通常是通过交流斯塔克偏移产生的,并受衍射的限制,其周期性⩾ λ/2,其中 λ 是用于产生晶格的光波长。具有较小周期性的晶格可能对冷原子的多体物理学有用,可以通过频闪应用具有亚波长特征的相移晶格来生成。在这里,我们展示了通过频闪应用光学克罗尼格-彭尼电势产生的λ/4间隔晶格。我们通过测量装入晶格基带的原子的平均概率密度,直接探测 λ/4 间隔晶格的周期性。我们测量了该晶格中原子的寿命,并讨论了限制这种频闪方法适用性的机制。
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