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晶格原子光学及其应用 被引量:4
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作者 恽旻 印建平 《量子电子学报》 CAS CSCD 北大核心 2006年第1期10-21,共12页
首先介绍了近年来发展起来的晶格原子光学,包括冷原子光学晶格、磁晶格和磁光晶格,并报道了国内一些小组研究磁晶格和磁光晶格的一些新结果。其次,简单综述了光学晶格中原子动力学、玻色-爱因斯坦凝聚(BEC)和量子态的相干传输与控制等... 首先介绍了近年来发展起来的晶格原子光学,包括冷原子光学晶格、磁晶格和磁光晶格,并报道了国内一些小组研究磁晶格和磁光晶格的一些新结果。其次,简单综述了光学晶格中原子动力学、玻色-爱因斯坦凝聚(BEC)和量子态的相干传输与控制等晶格原子光学研究的最新进展。最后,介绍了冷原子光学晶格、磁晶格和磁光晶格在光子晶体制备等方面的潜在应用。 展开更多
关键词 量子 原子 晶格 冷原子 晶格 磁光晶格 玻色-爱因斯坦凝聚
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Ground States of Ultracold Spin-1 Atoms in a Deep Double-Well Optical Superlattice in a Weak Magnetic Field
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作者 郑公平 秦帅锋 +1 位作者 王守阳 简闻天 《Communications in Theoretical Physics》 SCIE CAS CSCD 2013年第4期417-424,共8页
The ground states of the ultracold spin-1 atoms superlattice in a weak magnetic field are obtained. It is shown trapped in a deep one-dimensional double-weU optical that the ground-state diagrams of the reduced double... The ground states of the ultracold spin-1 atoms superlattice in a weak magnetic field are obtained. It is shown trapped in a deep one-dimensional double-weU optical that the ground-state diagrams of the reduced double- well model are remarkably different for the antiferromagnetic and ferromagnetic condensates. The transition between the singlet state and nematic state is observed for the antiferromagnetic interaction atoms, which can be realized by modulating the tunneling parameter or the quadratic Zeeman energy. An experiment to distinguish the different spin states is suggested. 展开更多
关键词 ground state ultracold atoms optical superlattice weak magnetic field
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Modulational Instability of Spinor Condensates in an Optical Lattice
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作者 郑公平 简闻天 杨玲玲 《Communications in Theoretical Physics》 SCIE CAS CSCD 2015年第5期565-568,共4页
We obtain analytically the static states and corresponding collective-excitation spectra of a quasi-onedimensional spin-1 condensate modulated by a long-wavelength optical lattice in the weak lattice limit. It is demo... We obtain analytically the static states and corresponding collective-excitation spectra of a quasi-onedimensional spin-1 condensate modulated by a long-wavelength optical lattice in the weak lattice limit. It is demonstrated that both ferromagnetic and antiferromagnetic condensates may exhibit dynamical instability, which agree with the results with numerical simulation. In the homogeneous limit, our resuRs reduce to the previous results for homogeneous spinor condensates, i.e., dynamical instability can occur only for ferromagnetic interaction and an antiferromagnetic condensate is always dynamically stable. 展开更多
关键词 long-wavelength optical lattice modulational instability spinor condensate
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