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Nanoscale guiding for cold atoms based on surface plasmons along the tips of metallic wedges 被引量:1

Nanoscale guiding for cold atoms based on surface plasmons along the tips of metallic wedges
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摘要 We propose a novel scheme to guide neutral cold atoms in a nanoscale region based on surface plasmons (SPs) of one pair and two pairs of tips of metallic wedges with locally enhanced light intensity and sub-optical wavelength resolution. We analyze the near-field intensity distribution of the tip of the metallic wedge by the FDTD method, and study the total intensity as well as the total potential of optical potentials and van der Waals potentials for 87 Rb atoms in the light field of one pair and two pairs of tips of metallic wedges. It shows that the total potentials of one pair and two pairs of tips of metallic wedges can generate a gravito-optical trap and a dark closed trap for nanoscale guiding of neutral cold atoms. Guided atoms can be cooled with efficient intensity-gradient Sisyphus cooling by blue-detuned light field. This provides an important step towards the generation of hybrid systems consisting of isolated atoms and solid devices. We propose a novel scheme to guide neutral cold atoms in a nanoscale region based on surface plasmons (SPs) of one pair and two pairs of tips of metallic wedges with locally enhanced light intensity and sub-optical wavelength resolution. We analyze the near-field intensity distribution of the tip of the metallic wedge by the FDTD method, and study the total intensity as well as the total potential of optical potentials and van der Waals potentials for 87 Rb atoms in the light field of one pair and two pairs of tips of metallic wedges. It shows that the total potentials of one pair and two pairs of tips of metallic wedges can generate a gravito-optical trap and a dark closed trap for nanoscale guiding of neutral cold atoms. Guided atoms can be cooled with efficient intensity-gradient Sisyphus cooling by blue-detuned light field. This provides an important step towards the generation of hybrid systems consisting of isolated atoms and solid devices.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第7期173-179,共7页 中国物理B(英文版)
基金 the National Basic Research Program of China(Grant No.2011CB013004) the National Natural Science Foundation of China(Grant No.50975128) the Natural Science Foundation of Jiangsu Province,China(Grant No.BK2011462) the Postdoctoral Science Foundation of China(Grant No.20100481093)
关键词 nanoscale guiding cold atoms surface plasmons metallic wedges nanoscale guiding cold atoms surface plasmons metallic wedges
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