Ostrovskaya Elena, Kivshar Yuri
Opt Express. 2004 Jan 12;12(1):19-29. doi: 10.1364/opex.12.000019.
We overview our recent theoretical studies on nonlinear atom optics of the Bose-Einstein condensates (BECs) loaded into optical lattices. In particular, we describe the band-gap spectrum and nonlinear localization of BECs in one- and two-dimensional optical lattices. We discuss the structure and stability properties of spatially localized states (matter-wave solitons) in 1D lattices, as well as trivial and vortex-like bound states of 2D gap solitons. To highlight similarities between the behavior of coherent light and matter waves in periodic potentials, we draw useful parallels with the physics of coherent light waves in nonlinear photonic crystals and optically-induced photonic lattices.
我们概述了近期关于加载到光学晶格中的玻色-爱因斯坦凝聚体(BECs)的非线性原子光学的理论研究。特别地,我们描述了BECs在一维和二维光学晶格中的带隙谱和非线性局域化。我们讨论了一维晶格中空间局域态(物质波孤子)的结构和稳定性特性,以及二维带隙孤子的平凡和类涡旋束缚态。为了突出周期势中相干光与物质波行为之间的相似性,我们将其与非线性光子晶体和光诱导光子晶格中相干光波的物理特性进行了有益的对比。