首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >3D MULTICELL DESIGNS FOR REGISTERING OF BOSE-EINSTEIN CONDENSATE CLOUDS
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3D MULTICELL DESIGNS FOR REGISTERING OF BOSE-EINSTEIN CONDENSATE CLOUDS

机译:用于玻色-爱因斯坦冷凝物沉淀的3D多细胞设计

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In this letter, the results on the development and simulation of new three-dimensional nanotraps for cold dressed atoms are considered. The traps are the multi-cell structures built by crossed nan-touching carbon or metallic nanotubes. The trapping effect is tuned by the DC and RF currents to confine the strong- or low-potential seeking atoms far enough from the areas of strong Casimir-Polder and spin-flip forces. It is supposed that the developed and simulated multi-cell structures are pertinent for catching the Bose-Einstein condensates to demonstrate the Josephson effect, and to enable the study of the entanglement of confined clouds in three-dimensional nano-cells.
机译:在这封信中,考虑了用于冷加工原子的新型三维纳米阱的开发和模拟结果。陷阱是由交叉的纳米碳或金属纳米管构成的多单元结构。俘获效应通过直流和射频电流进行调整,以将强电势或低电势寻找原子限制在距离强卡西米尔-珀尔德和自旋翻转力区域足够远的地方。可以认为,已开发和模拟的多单元结构与捕获玻色-爱因斯坦凝聚物有关,以证明约瑟夫森效应,并使得能够研究受限云在三维纳米单元中的纠缠。

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