Nanofabrication and atom manipulation by optical near-field and relevant quantum optical theory

Nanofabrication and atom manipulation by optical near-field and relevant quantum optical theory
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光学近场纳米加工和原子操纵及相关量子光学理论

DOI:
10.1109/5.883321
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发表时间:
2000
影响因子:
20.6
通讯作者:
Geun
Geun
中科院分区:
计算机科学1区
文献类型:
--
作者:
M. Ohtsu;K. Kobayashi;Haruhiko Ito;Geun

文献摘要

被引文献

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综述了近年来光学近场与纳米材料与原子相互作用的研究进展。利用紫外光学近场实现了小于100 nm尺寸的锌点和锌线的光化学气相沉积。还发现了纳米级氧化锌的沉积。然后描述了控制原子在高真空中的热运动的原子操作。给出了利用棱镜表面产生的光近场、中空光纤和光纤探针进行操纵的实验和理论结果。最后给出了光学近场的量子理论处理。
Recent progress on application of interactions between optical near-field and nanoscale materials and atoms is reviewed. Photochemical vapor deposition of Zn dots and lines with the size of sub-100 nm has been realized by using an ultraviolet optical near field. Deposition of nanoscale ZnO is also revealed. Manipulation of atoms is then described to control the thermal motion of atoms in high vacuum. Experimental and theoretical results of manipulation by using optical near field generated on a prism surface, hollow fiber, and fiber probe are presented. Finally, quantum theoretical treatment of optical near field is given.