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1)  optical lattice
光学格点
1.
Solitons of spinor Bose-Einstein condensates in an optical lattice;
光学格点中玻色-爱因斯坦凝聚的自旋孤子(英文)
2)  optical lattice
光学晶格
1.
Loading and cooling of cesium atoms in 3D optical lattice;
三维光学晶格中铯原子的装载与冷却
2.
The ground state energy and the average atom number per lattice site of 7Li atoms that are loaded into an optical lattice have been calculated when the repulsive three-body interaction is considered.
在考虑三体排斥相互作用的前提下,通过计算加载在光学晶格中的、具有两体吸引相互作用的7Li原子的基态能量和单格点平均粒子数,说明了具有两体吸引相互作用的原子也可以发生超流-Mott绝缘相变。
3.
We study the quantum phases that may arise when 7Li atoms that possess an attractive two-body interaction are loaded into an optical lattice.
主要讨论加载在光学晶格中的、具有两体吸引相互作用的7L i原子可能呈现的量子相。
3)  optical lattice
光学格子
1.
Investigation of the beam evolution in nonlinear optical lattice;
非线性光学格子中的光束演化研究
2.
Study of propagation characteristics and control of one-dimensional optical lattice soliton;
一维光学格子孤子的传输特性及控制研究
3.
A method of producing 2D and 3D optical lattices with multi-beam interference by using the pyramid lens and the top-chopped pyramid lens is proposed.
提出了一种使用多棱锥镜和多棱台镜产生多束相干光形成二维和三维光学格子的方法。
4)  optical lattices
光学晶格
1.
The recent development of lattice atom optics is introduced, including atomic optical lattices, atomic magnetic lattices and magneto-optical lattices, and some new results of atomic magnetic lattices and magneto-optical lattices, and some new results on the investigations of magnetic and magneto-optical lattices are reported.
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。
2.
Then optical lattices produced by interfering laser beams are considered.
然后我们介绍了由相干激光束所产生的光学晶格,以及位于其中的玻色原子所呈现的量子相:超流相和Mott绝缘相。
5)  optics of crystalline lattice
晶格光学
6)  laser grid
光学栅格
1.
Firstly,reasonable scope of spectrum was defined according to situation of blast furnace,polar coordinate laser grid was established,and characteristic points of charging trajectory were determined.
首先根据高炉工况确定激光发生器合理的光谱范围,建立极坐标光学栅格,确定料流轨迹的特征点,然后采用三角法原理,引入模式识别中的立体视觉技术进行轨迹检测后,采用专业图像处理模块对料流轨迹图像进行分析,对料流轨迹图像进行三维重建,直观地获得布料过程中料流轨迹的三维信息。
补充资料:光学对点器


光学对点器


域光学对点器
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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