High-speed, compact silicon and hybrid plasmonic waveguides for signal processing

High-speed, compact silicon and hybrid plasmonic waveguides for signal processing
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用于信号处理的高速、紧凑型硅和混合等离子体波导

DOI:
10.1007/s12200-011-0218-x
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发表时间:
2011-08
期刊:
Front. Optoelectron. China
影响因子:
--
通讯作者:
苏翼凯
苏翼凯
中科院分区:
其他
文献类型:
--
作者:
苏翼凯

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用于信号处理的全光电路可能是克服电子学速度瓶颈的一个有前途的解决方案。对于光子学工业,硅成为集成光学领域中用于设计和实现高速和紧凑光子器件的有竞争力的材料选择。为了进一步提高集成密度,由于衍射限制,在比介质波导的波长小得多的尺度上操纵光是一个关键的挑战。表面等离子体激元(SPPs)作为一种突破衍射极限的激元,近年来受到越来越多的关注。以微分器为例,比较了电子器件和光学器件的优缺点,提出了一种基于硅基混合等离子体波导的光参量放大器(OPA)。
All-optical circuits for signal processing could be a promising solution to overcome the speed bottleneck of electronics. For the photonics industry, silicon becomes a competitive material of choice in the field of integrated optics for designing and implementing high-speed and compact photonic devices. To further increase the integration density, it is a critical challenge to manipulate light on scales much smaller than the wavelength for the dielectric waveguides due to the diffraction limitation. Surface plasmon-polaritons (SPPs), which break the diffraction limitation, are receiving increasing attentions in recent years. This paper compares the advantages and disadvantages between electronic devices and optical devices taking differentiator as an example, and proposes an optical parametric amplifier (OPA) using silicon-based hybrid plasmonic waveguide.
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