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Submicron-scale spatial compression of light beam through two-stage photonic crystals spot-size converter
其他题名论文其他题名
Cui N.; Liang J.; Liang Z.; Ning Y.; Wang W.
2012
发表期刊Optics Communications
ISSN0030-4018
卷号285期号:16页码:3453-3458
摘要Photonic crystals spot-size converter that achieved the controlling of the spot-size through two-stage conversions was proposed. The pre-conversion depended on the efficient coupling between the high quality factor resonator and photonic crystal waveguide. Nearly unity transmission efficiency of the pre-conversion can be achieved through optimizing the radii of the rods located surrounding the resonator. Nanowire waveguide with width of 0.14 mu m at a distance 1.05 mu m from the resonator was introduced to realize the second stage conversion. Through two-stage conversions, the light beam width was converted to 0.16 mu m. The transmission efficiency and conversion ratio reached to 94.6% and 14.875 respectively in theory. (c) 2012 Elsevier B.V. All rights reserved.
收录类别SCI
语种英语
文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/24638
专题中科院长春光机所知识产出
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Cui N.,Liang J.,Liang Z.,et al. Submicron-scale spatial compression of light beam through two-stage photonic crystals spot-size converter[J]. Optics Communications,2012,285(16):3453-3458.
APA Cui N.,Liang J.,Liang Z.,Ning Y.,&Wang W..(2012).Submicron-scale spatial compression of light beam through two-stage photonic crystals spot-size converter.Optics Communications,285(16),3453-3458.
MLA Cui N.,et al."Submicron-scale spatial compression of light beam through two-stage photonic crystals spot-size converter".Optics Communications 285.16(2012):3453-3458.
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